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Paper Citation Record · LEDGER

Programmable Probabilistic Computer with 1,000,000 p-bits

As of 6 August 2026, this Paper Citation Record lists 80 of 80 outbound references and 0 inbound Pith citation observations for arXiv:2606.25313.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2606.25313 v1

Coverage vector

measured 80 of 80 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-06-25T20:44:30.520336Z

measured 80 of 80 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-06T06:34:29.942622+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links

measured 0 of 1 external citation measurements

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Source: cited_works

Reference resolution

80 of 80 outbound references displayed

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  • verified fuzzy0
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Outbound references

Observation b390fa8b-dab0-44be-b909-4c6fd8e22ea2 · outbound

This paper cites Efficient processing of deep neural networks: A tutorial and survey.Proceedings of the IEEE, 105(12):2295–2329, 2017.

Programmable Probabilistic Computer with 1,000,000 p-bits Efficient processing of deep neural networks: A tutorial and survey.Proceedings of the IEEE, 105(12):2295–2329, 2017

Reference 1

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:69a8983ad35cf385731ba4e9654107f21cbdc54f1da7785ce81aad496ceb83ee

Observation dff6457f-dee9-48e8-bdfc-3488d0e8b97a · outbound

This paper cites Google workloads for consumer devices: Mitigating data movement bottlenecks.

Programmable Probabilistic Computer with 1,000,000 p-bits Google workloads for consumer devices: Mitigating data movement bottlenecks

Reference 2

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:ad221910500edc373d9a4eaadca99dd2c56b1cf1f006a3433af1465411e1b8a6

Observation ffdb2438-fd1f-42cc-bab3-bf942e8670cd · outbound

This paper cites King, Jack Raymond, Trevor Lanting, Richard Harris, Alex Zucca, Fabio Altomare, Andrew J.

Programmable Probabilistic Computer with 1,000,000 p-bits King, Jack Raymond, Trevor Lanting, Richard Harris, Alex Zucca, Fabio Altomare, Andrew J

Reference 3

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:83d785b65256b0244c0e1bb98208e94d7549c5e967712991c8d2adad6ed99067

Observation 69e4e458-8ef3-4bcf-b9a8-e8a492f3f994 · outbound

This paper cites Beyond-classical computation in quantum simulation.Science, 388 (6743):199–204, 2025.

Programmable Probabilistic Computer with 1,000,000 p-bits Beyond-classical computation in quantum simulation.Science, 388 (6743):199–204, 2025

Reference 4

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:1fd9d84d5f15635adf54af627649d6f633cb40321e3b2c462b6e638df4b53ea3

Observation b4ff23a8-90bd-40b1-8feb-ff70df3f6f97 · outbound

This paper cites How to Build a Quantum Supercomputer: Scaling from Hundreds to Millions of Qubits.

Programmable Probabilistic Computer with 1,000,000 p-bits How to Build a Quantum Supercomputer: Scaling from Hundreds to Millions of Qubits

Reference 5

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:7fb2eb20244c6e04406bf6fde25c83a6221c63aa925a9145922bd4326a8c0209

Observation 7662dc96-c8da-4b82-b702-087a791dbf37 · outbound

This paper cites 100,000-spin coherent Ising machine.Science advances, 7(40): eabh0952, 2021.

Programmable Probabilistic Computer with 1,000,000 p-bits 100,000-spin coherent Ising machine.Science advances, 7(40): eabh0952, 2021

Reference 6

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:18a07a14a7ba8ca1d6d0aa8a77d78c20e24b12bedafc3a1e68a001313e384092

Observation 7313956e-d056-4857-80c4-33abed713970 · outbound

This paper cites 4.6 A 144Kb annealing system composed of 9×16Kb annealing processor chips with scalable chip-to-chip connections for large-scale combinatorial optimization problems.

Programmable Probabilistic Computer with 1,000,000 p-bits 4.6 A 144Kb annealing system composed of 9×16Kb annealing processor chips with scalable chip-to-chip connections for large-scale combinatorial optimization problems

Reference 7

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:7d97139805b75164af23d9afbaf3c2d265ffc6a20c87f9e250f636d90bda1d8a

Observation 02965e25-e818-47a5-b3bd-ccde2a641e36 · outbound

This paper cites 1.1 computing’s energy problem (and what we can do about it).

Programmable Probabilistic Computer with 1,000,000 p-bits 1.1 computing’s energy problem (and what we can do about it)

Reference 8

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:d3d030a8cc87f5c6f17609f6e5d928e20b746561d3b7a4e76db1c7bcf88eb76e

Observation 08ed80f1-dff4-4cc7-b0e3-c35361745ef5 · outbound

This paper cites Illusion of large on-chip memory by networked computing chips for neural network inference.

Programmable Probabilistic Computer with 1,000,000 p-bits Illusion of large on-chip memory by networked computing chips for neural network inference

Reference 9

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:8635c6b3a67ff7fd8ad7cf44bece1fd71786b6ec689c630fd757cc71e6fd95c5

Observation a7ef91f3-cf90-4c28-a236-ec996267c459 · outbound

This paper cites The Future of Memory: Limits and Opportunities.arXiv preprint arXiv:2508.20425, 2025.

Programmable Probabilistic Computer with 1,000,000 p-bits The Future of Memory: Limits and Opportunities.arXiv preprint arXiv:2508.20425, 2025

Reference 10

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:657c2f518a023a2a873572c9d682cdfa2e669dbe7c122d0a4dc263afee933480

Observation cb986233-efba-458d-8276-10b673846f5b · outbound

This paper cites AI and memory wall.

Programmable Probabilistic Computer with 1,000,000 p-bits AI and memory wall

Reference 11

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:5e5b59477a88998f1950c41f6010a6362490fa16ac523d85823bd97c9140d761

Observation 359f9a19-8407-4714-90fb-d36435238f50 · outbound

This paper cites Optimization by simulated annealing.Science, 220(4598):671–680, 1983.

Programmable Probabilistic Computer with 1,000,000 p-bits Optimization by simulated annealing.Science, 220(4598):671–680, 1983

Reference 12

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:9e25546ca23ca320c050bbb0b30b15ddb7ca0545a102a84fe7f5831ce6c2fd56

Observation 84b9d676-8339-4ff3-a0af-0f6df047e1dd · outbound

This paper cites Ising formulations of many NP problems.Frontiers in Physics, 2:5, 2014.

Programmable Probabilistic Computer with 1,000,000 p-bits Ising formulations of many NP problems.Frontiers in Physics, 2:5, 2014

Reference 13

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:93404a89d3c9cc123f1977d5d78cc5c6f03078e99a2decfeeb6633762fdd3cbe

Observation e5eb75c8-f5e9-4666-9b20-29d04a4b59d0 · outbound

This paper cites Ising machines as hardware solvers of combinatorial optimization problems.Nature Reviews Physics, 4(6):363–379, 2022.

Programmable Probabilistic Computer with 1,000,000 p-bits Ising machines as hardware solvers of combinatorial optimization problems.Nature Reviews Physics, 4(6):363–379, 2022

Reference 14

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:e2ba4716afc758454f0f9ea26d3a3e9c6b3aaa13745bff1f91ef606fc7575866

Observation 49dda86e-f3cd-4f36-aa9b-228d4a3b161e · outbound

This paper cites Roadmap for unconventional computing with nanotechnology.

Programmable Probabilistic Computer with 1,000,000 p-bits Roadmap for unconventional computing with nanotechnology

Reference 15

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:31330abf173af71e7a77771adb286191b33ffe724b2fafc82146b01243698987

Observation 32337ad3-f137-44c8-81b3-35b10778b794 · outbound

This paper cites CMOS plus stochastic nanomagnets enabling heterogeneous computers for probabilistic inference and learning.Nature Communications, 15(1):2685, 2024.

Programmable Probabilistic Computer with 1,000,000 p-bits CMOS plus stochastic nanomagnets enabling heterogeneous computers for probabilistic inference and learning.Nature Communications, 15(1):2685, 2024

Reference 16

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:cc2727bbe7aa292a36a9a189aab2579e5cbd4c0c9b767bdac8a104adce6903ac

Observation 66e81d88-1bfc-4b46-bb59-5353f1bca6c3 · outbound

This paper cites Theory of spin glasses.Journal of Physics F: Metal Physics, 5(5):965, 1975.

Programmable Probabilistic Computer with 1,000,000 p-bits Theory of spin glasses.Journal of Physics F: Metal Physics, 5(5):965, 1975

Reference 17

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:82cfcf2c7cca73e9b65fe2fff818b97703fca434f80643baf0c6e034638f0779

Observation c64ec32e-5510-488d-9fbc-982f6f0d0436 · outbound

This paper cites On the computational complexity of Ising spin glass models.Journal of Physics A: Mathematical and General, 15(10):3241, 1982.

Programmable Probabilistic Computer with 1,000,000 p-bits On the computational complexity of Ising spin glass models.Journal of Physics A: Mathematical and General, 15(10):3241, 1982

Reference 18

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:3cdfc852384fb4d6deeec051cffc77b9360d149a7e7b674127a1c59f3b601291

Observation 21f453a0-10b4-42d7-bd4b-324c23d492d2 · outbound

This paper cites Infinite number of order parameters for spin-glasses.Physical Review Letters, 43(23):1754, 1979.

Programmable Probabilistic Computer with 1,000,000 p-bits Infinite number of order parameters for spin-glasses.Physical Review Letters, 43(23):1754, 1979

Reference 19

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:5b6d09575e845f087414f16aa336afc20382efef85046389b9a3a336f6a3fc11

Observation 88a42936-2915-46ee-9679-f6769f07b194 · outbound

This paper cites World Scientific Publishing Company, 1987.

Programmable Probabilistic Computer with 1,000,000 p-bits World Scientific Publishing Company, 1987

Reference 20

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:0c726ee6ea91beb40d84dca17c754dfe98b4473a4674ad62f0b28f66ba3ee5b2

Observation 421debf9-6eeb-43f1-bb1e-c65c6bf459be · outbound

This paper cites Ordered phase of short-range Ising spin-glasses.Physical review letters, 56(15):1601, 1986.

Programmable Probabilistic Computer with 1,000,000 p-bits Ordered phase of short-range Ising spin-glasses.Physical review letters, 56(15):1601, 1986

Reference 21

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:38204d2500e6ae11d170fde0ce88439fa8f25ed961966c2fe9b2260148d32f53

Observation 611562f4-9088-470f-b3a8-6a133daa7f0e · outbound

This paper cites Solvable model of a spin-glass.Physical review letters, 35(26):1792, 1975.

Programmable Probabilistic Computer with 1,000,000 p-bits Solvable model of a spin-glass.Physical review letters, 35(26):1792, 1975

Reference 22

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:cec2a27485094912581fee5f7841eec03160dfc6d2ce6b41ee30b0c2a102ee58

Observation c5d5851a-d696-4092-988c-773a452660a1 · outbound

This paper cites Pushing the boundary of quantum advantage in hard combinatorial optimization with probabilistic computers.Nature Communications, 16(1):9193, 2025.

Programmable Probabilistic Computer with 1,000,000 p-bits Pushing the boundary of quantum advantage in hard combinatorial optimization with probabilistic computers.Nature Communications, 16(1):9193, 2025

Reference 23

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:7a28c1d694ee349b26e9df5151eedfa37d748d813f0f94432b30e4352cfd30a6

Observation b20c9a8c-6adc-4fd4-8387-10a77e5bbaa3 · outbound

This paper cites Janus: An FPGA-based system for high- performance scientific computing.Computing in Science & Engineering, 11(1):48–58, 2008.

Programmable Probabilistic Computer with 1,000,000 p-bits Janus: An FPGA-based system for high- performance scientific computing.Computing in Science & Engineering, 11(1):48–58, 2008

Reference 24

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:a7b4ea162f8d65ecf9f6d8ee7310d0bb3b1d86725dae79895d00cee1d7830392

Observation 3e481a6c-12e5-45df-9789-53c639c81c9a · outbound

This paper cites Janus II: A new generation application- driven computer for spin-system simulations.Computer Physics Communications, 185(2):550–559, 2014.

Programmable Probabilistic Computer with 1,000,000 p-bits Janus II: A new generation application- driven computer for spin-system simulations.Computer Physics Communications, 185(2):550–559, 2014

Reference 25

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:cb78cf3ecbca4fbc651bec05920ad213f84bf14552ae95b1c55de41eaad3de2a

Observation aa2dee4f-0992-4ade-9f72-d96d2fa25554 · outbound

This paper cites Highly optimized simulations on single- and multi-GPU systems of the 3D Ising spin glass model.Computer Physics Communications, 196:290–303, 2015.

Programmable Probabilistic Computer with 1,000,000 p-bits Highly optimized simulations on single- and multi-GPU systems of the 3D Ising spin glass model.Computer Physics Communications, 196:290–303, 2015

Reference 26

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:5e47bb2073ba3afc8c18902e30cae78ca0518f474ea34e4fde243238a91ec71d

Observation 57346d2d-6335-4072-8232-1a7008108dd7 · outbound

This paper cites The QISG suite: High- performance codes for studying quantum Ising spin glasses.Computer Physics Communications, 298:109101, 2024.

Programmable Probabilistic Computer with 1,000,000 p-bits The QISG suite: High- performance codes for studying quantum Ising spin glasses.Computer Physics Communications, 298:109101, 2024

Reference 27

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:000157e67fd271292dd7d0bbea1ca7bf7a7c232702a2108ad1b8eaa889ec1ca8

Observation cf3f326a-0e08-4fad-ba89-9d51f4bd1183 · outbound

This paper cites Combinatorial optimization by simulating adiabatic bifurcations in nonlinear Hamiltonian systems.Science advances, 5(4):eaav2372, 2019.

Programmable Probabilistic Computer with 1,000,000 p-bits Combinatorial optimization by simulating adiabatic bifurcations in nonlinear Hamiltonian systems.Science advances, 5(4):eaav2372, 2019

Reference 28

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:4d7308419e5ce1a7e35043eec563fd76c0e86b944e54316cbe901d438a87bebe

Observation 22ab202b-33f9-4ce0-a76f-316fe08252c4 · outbound

This paper cites High-performance combinatorial optimization based on classical mechanics.Science Advances, 7(6): eabe7953, 2021.

Programmable Probabilistic Computer with 1,000,000 p-bits High-performance combinatorial optimization based on classical mechanics.Science Advances, 7(6): eabe7953, 2021

Reference 29

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:3f52d0c8192844f0dd53a115ab6bd0d675a19b41c14ae56e61304972acbccc93

Observation 5f1b1eba-7fa6-4cfe-a163-edae6d71d352 · outbound

This paper cites Scaling out Ising machines using a multi-chip architecture for simulated bifurcation.Nature Electronics, 4(3):208–217, 2021.

Programmable Probabilistic Computer with 1,000,000 p-bits Scaling out Ising machines using a multi-chip architecture for simulated bifurcation.Nature Electronics, 4(3):208–217, 2021

Reference 30

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:052be03a0ef782bf7adef8370f8db53791e047c49176bfffdac86997eefc185f

Observation 81a52d07-1ce0-4ec7-8e7e-17a9a4c2ddf2 · outbound

This paper cites Efficient and scalable architecture for multiple- chip implementation of simulated bifurcation machines.IEEE Access, 12:36606–36621, 2024.

Programmable Probabilistic Computer with 1,000,000 p-bits Efficient and scalable architecture for multiple- chip implementation of simulated bifurcation machines.IEEE Access, 12:36606–36621, 2024

Reference 31

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:8c0727aafc6dff19e5b57e677cea91ba4fe7431ab8a54cf59098b5aceb10faec

Observation e3aa4271-adca-4e7a-9d1c-5ea5ff1b2917 · outbound

This paper cites Increasing ising machine capacity with multi-chip architectures.

Programmable Probabilistic Computer with 1,000,000 p-bits Increasing ising machine capacity with multi-chip architectures

Reference 32

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:9723057a869099da364d281967215faa20b17b968a0184a0caf83d3efd603bde

Observation 391758fb-f9e4-4efa-936e-e9654492d58b · outbound

This paper cites Next-generation Probabilistic Computing Hardware with 3D MOSAICs, Illusion Scale-up, and Co-design.

Programmable Probabilistic Computer with 1,000,000 p-bits Next-generation Probabilistic Computing Hardware with 3D MOSAICs, Illusion Scale-up, and Co-design

Reference 33

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arxiv_id, observed 2026-07-04T20:10:07.196319Z

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:b34eeb2964f97215dfe9b5d273270096f8fb7c024b7a38fa97b0faeaaa96427c

Observation 2d49ff18-94de-4f3d-b4bd-4fe00a85f1c1 · outbound

This paper cites P-bits for probabilistic spin logic.Applied Physics Reviews, 6(1): 011305, 2019.

Programmable Probabilistic Computer with 1,000,000 p-bits P-bits for probabilistic spin logic.Applied Physics Reviews, 6(1): 011305, 2019

Reference 34

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:634d40464b955ac8f5bf31dadf982e1baa8e380973d12e4c82b10f0e896be237

Observation 6844be99-8d7d-4860-b4ea-ba6d6a6f2bec · outbound

This paper cites Stochastic p-bits for invertible logic.Physical Review X, 7(3):031014, 2017.

Programmable Probabilistic Computer with 1,000,000 p-bits Stochastic p-bits for invertible logic.Physical Review X, 7(3):031014, 2017

Reference 35

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:0607a92e6c4a615184926107659e2e1aa5164b4664959b4dec8cf1af227ff27f

Observation 976ae2dc-e5a6-490f-be4d-535abe6b51b8 · outbound

This paper cites Probabilistic computing with p-bits.Applied Physics Letters, 119(15):150503, 2021.

Programmable Probabilistic Computer with 1,000,000 p-bits Probabilistic computing with p-bits.Applied Physics Letters, 119(15):150503, 2021

Reference 36

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:559ac9842bbf1f6519ea6ded3e1ae0f0c746f679ca6d1a46d1249b90d952278e

Observation a5798c2d-6be0-480f-9ef7-145fb685a65e · outbound

This paper cites Modular approach to spintronics.Scientific reports, 5:10571, 2015.

Programmable Probabilistic Computer with 1,000,000 p-bits Modular approach to spintronics.Scientific reports, 5:10571, 2015

Reference 37

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:3773aa9cc766534705c0c04858c456e12d10b4d78ca959f95900a0f1517828d5

Observation 516b9742-bf5a-4bc7-a1ae-a59380315dee · outbound

This paper cites Implementing p-bits with embedded MTJ.IEEE Electron Device Letters, 38(12):1767–1770, 2017.

Programmable Probabilistic Computer with 1,000,000 p-bits Implementing p-bits with embedded MTJ.IEEE Electron Device Letters, 38(12):1767–1770, 2017

Reference 38

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:27dff439d1c67650e865d7ab703bee5259a60c1e9c63f133117e91cafe4eca9c

Observation 088d51ac-fbca-4b5b-9072-998f661c6b01 · outbound

This paper cites Integer factorization using stochastic magnetic tunnel junctions.Nature, 573(7774):390–393, 2019.

Programmable Probabilistic Computer with 1,000,000 p-bits Integer factorization using stochastic magnetic tunnel junctions.Nature, 573(7774):390–393, 2019

Reference 39

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:198174e26619e8037f656e89283818b5e4cb88f27870481cc1c45bd41c705702

Observation 3de2acea-d0ab-4104-99fc-e8d8251d7402 · outbound

This paper cites Subnanosecond fluctuations in low-barrier nanomagnets.Physical Review Applied, 12(5):054056, 2019.

Programmable Probabilistic Computer with 1,000,000 p-bits Subnanosecond fluctuations in low-barrier nanomagnets.Physical Review Applied, 12(5):054056, 2019

Reference 40

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:ffb19d0389e4f0151817ed810bba97f87b037d207338ec49117363c47e2f54b7

Observation 80082d3c-56cb-4c11-a7ef-575f4557aae8 · outbound

This paper cites Massively parallel probabilistic computing with sparse Ising machines.Nature Electronics, 5(7):460–468, 2022.

Programmable Probabilistic Computer with 1,000,000 p-bits Massively parallel probabilistic computing with sparse Ising machines.Nature Electronics, 5(7):460–468, 2022

Reference 41

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:8841f4c885f9a7fbc7f6a57cc0a09987a5beb85a6d6819ceb2f017eeac8cd852

Observation 2f7ca9c8-54aa-4851-94c9-828ae1ebe3a1 · outbound

This paper cites All-to-all reconfigurability with sparse and higher-order Ising machines.Nature Communications, 15(1):8977, 2024.

Programmable Probabilistic Computer with 1,000,000 p-bits All-to-all reconfigurability with sparse and higher-order Ising machines.Nature Communications, 15(1):8977, 2024

Reference 42

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:9e12f98fee97c27196cf17c7304b651eacd52dfdc249ac1358a407ceb92a34b2

Observation 2559efce-4614-450e-bee1-275d8f3e5fbe · outbound

This paper cites Statistics of the Three-Dimensional Ferromagnet (III).Journal of the Physical Society of Japan, 6(1): 31–35, 1951.

Programmable Probabilistic Computer with 1,000,000 p-bits Statistics of the Three-Dimensional Ferromagnet (III).Journal of the Physical Society of Japan, 6(1): 31–35, 1951

Reference 43

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:fb7599be539620bddf735d3d0b94f8548847aa49ea9130e61465f084fa805010

Observation 1f4d8ca2-186c-4ac3-b2d5-36f2896654ca · outbound

This paper cites Statistical theory of superlattices.Proceedings of the Royal Society of London.

Programmable Probabilistic Computer with 1,000,000 p-bits Statistical theory of superlattices.Proceedings of the Royal Society of London

Reference 44

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:d891fe7ba94ede59da091810df9d2be873bc648a3d496b74ee9a7098cd725930

Observation 3b2c887e-e6d6-4548-afa4-7db3595b3068 · outbound

This paper cites Cluster variation method in statistical physics and probabilistic graphical models.Journal of Physics A: Mathematical and General, 38(33):R309–R339, 2005.

Programmable Probabilistic Computer with 1,000,000 p-bits Cluster variation method in statistical physics and probabilistic graphical models.Journal of Physics A: Mathematical and General, 38(33):R309–R339, 2005

Reference 45

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:2314824277d4c36bc0e39bf664e19f0f49440caedd5512422fd3af3c7abe0fdd

Observation cda229ce-c311-48ff-a325-f18f84a5617e · outbound

This paper cites Correlated cluster mean-field theory for spin systems.Physical Review B, 79(14):144427, 2009.

Programmable Probabilistic Computer with 1,000,000 p-bits Correlated cluster mean-field theory for spin systems.Physical Review B, 79(14):144427, 2009

Reference 46

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:9c43370280d1b0ee8e19171b4738665ab5ba786c044e8c9985c1358dbe21f01b

Observation e1089ae3-c04b-4b86-b25f-d3a5dfb2e222 · outbound

This paper cites A Generalized Mean Field Algorithm for Variational Inference in Exponential Families.

Programmable Probabilistic Computer with 1,000,000 p-bits A Generalized Mean Field Algorithm for Variational Inference in Exponential Families

Reference 47

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local_arxiv, observed 2026-07-04T20:10:07.202040Z

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No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:8e326a403a2bf69a4ea0e043dd377a727f7d4f24b0541f6692e95935d87f3472

Observation e1b25060-dbe5-4d47-8025-4943a99c56f1 · outbound

This paper cites an unresolved cited work.

Programmable Probabilistic Computer with 1,000,000 p-bits Unresolved cited work

Reference 48

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:2c7c8cad0032b9ad38e04249cd5239f2a424958323baf61938285c82d7a58731

Observation 4077170a-89ea-4403-913b-c1e4d9b149b7 · outbound

This paper cites KaHIP v3.00 -- Karlsruhe High Quality Partitioning -- User Guide.

Programmable Probabilistic Computer with 1,000,000 p-bits KaHIP v3.00 -- Karlsruhe High Quality Partitioning -- User Guide

Reference 49

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arxiv_id, observed 2026-07-04T20:10:07.186379Z

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No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:b8c4ddd4bb4606f2887840a1318b6d292e62d5e1e01fa7195d42299cfbbd2828

Observation b5151cbd-ba39-439f-9723-3821f874b0e1 · outbound

This paper cites AMD Versal Premium VP1902 Adaptive SoC, 2023.

Programmable Probabilistic Computer with 1,000,000 p-bits AMD Versal Premium VP1902 Adaptive SoC, 2023

Reference 50

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:dccf42a427627d8c0be65b76ad90174a2607dcbefcf6b5cdb7c8864c3916eec4

Observation 43704649-613c-4b75-b8ed-21d549a1f4c7 · outbound

This paper cites Parallel random numbers: as easy as 1, 2, 3.

Programmable Probabilistic Computer with 1,000,000 p-bits Parallel random numbers: as easy as 1, 2, 3

Reference 51

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:e9bdcf982c7899e65a3ca737827ccc0b86a4551ab5b75cb3147f41667140db0d

Observation fc63aac1-409c-4b2d-b2a9-515b04e39e28 · outbound

This paper cites Gset: A benchmark library for graph partitioning and Max-Cut, 2003.

Programmable Probabilistic Computer with 1,000,000 p-bits Gset: A benchmark library for graph partitioning and Max-Cut, 2003

Reference 52

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:38b796df149255987ac766b3681e3aea3ef114a9fa0db8c4d22203bf77eb3173

Observation ef7962d5-a408-408a-8fd7-bf7ff1cf79da · outbound

This paper cites Performance report of heuristic algorithm that cracked the largest Gset Ising problems (G81 cut=14060).

Programmable Probabilistic Computer with 1,000,000 p-bits Performance report of heuristic algorithm that cracked the largest Gset Ising problems (G81 cut=14060)

Reference 53

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verified exact
arxiv_id, observed 2026-07-04T20:10:07.192133Z

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No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:5132188c135ddb821db7c0ba7a933029d8b3826d3ca599818add2287fe14174d

Observation 9ed20fbf-b5b1-4966-a44d-dccec2eb047b · outbound

This paper cites Cosm: Collective Switched Motion for Fast and Accurate Sparse Ising Optimization.

Programmable Probabilistic Computer with 1,000,000 p-bits Cosm: Collective Switched Motion for Fast and Accurate Sparse Ising Optimization

Reference 54

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local_arxiv, observed 2026-07-04T20:10:07.189215Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-06T06:34:29.942622+00:00.

source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:4b94401f85e931696f3157888e495e08a94adf10932eb5ab0804234df5ad50d1

Observation 66de0f46-35f0-41da-bca9-e3b67a6309b6 · outbound

This paper cites an unresolved cited work.

Programmable Probabilistic Computer with 1,000,000 p-bits Unresolved cited work

Reference 55

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:0552fd65b2d60a9e73cf53080a8d2ffdb5c2e117ce165ea27c74b876fa729c78

Observation fc9b927a-44dc-405d-96ad-d15731cdde8a · outbound

This paper cites Equation planting: a tool for benchmarking Ising machines.Physical Review Applied, 12(1):011003, 2019.

Programmable Probabilistic Computer with 1,000,000 p-bits Equation planting: a tool for benchmarking Ising machines.Physical Review Applied, 12(1):011003, 2019

Reference 56

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:53856269c49da904af6a36865e6af8769fdcb9bba1d9aa5d67ebe93890a61fa2

Observation cd4c931d-f6bf-470f-bf30-a2a8b0cb2634 · outbound

This paper cites Analytic and algorithmic solution of random satisfiability problems.

Programmable Probabilistic Computer with 1,000,000 p-bits Analytic and algorithmic solution of random satisfiability problems

Reference 57

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:026f636e7842fa040d640bae1dcf384ef5913d1c3cd1ff06e40f307a495b78ce

Observation fa5a87c7-0174-4e53-bfae-aeb139b8a361 · outbound

This paper cites 3SAT on an all-to-all-connected CMOS Ising solver chip.Scientific reports, 14(1):10757, 2024.

Programmable Probabilistic Computer with 1,000,000 p-bits 3SAT on an all-to-all-connected CMOS Ising solver chip.Scientific reports, 14(1):10757, 2024

Reference 58

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:c21c6ee58e0d4b83c5b79d8306955a1f56db9499a1423de00343458f4fde9ffd

Observation 59d3eb47-9521-42c7-ae14-c423e1f3cba1 · outbound

This paper cites An 8K-Spin Ising Machine IC with Reconfigurable Many-Body Spin Interactions and Limitless Multichip Extension.

Programmable Probabilistic Computer with 1,000,000 p-bits An 8K-Spin Ising Machine IC with Reconfigurable Many-Body Spin Interactions and Limitless Multichip Extension

Reference 59

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:5344e07e661701c1c6e68066bd5cf2722b2ff4990c8e87448b166fa2976b80eb

Observation 66d3350c-fa92-40b5-a29b-c6079838a602 · outbound

This paper cites Analyzing Hogwild parallel Gaussian Gibbs sampling.Advances in neural information processing systems, 26:2715–2723, 2013.

Programmable Probabilistic Computer with 1,000,000 p-bits Analyzing Hogwild parallel Gaussian Gibbs sampling.Advances in neural information processing systems, 26:2715–2723, 2013

Reference 60

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:84db7c4f68bd00b63763684de9ea2bfe605061dae7e9be18e4cebbab00dbd827

Observation fbe5a17b-7306-4ce3-9e3e-95473e5ae3b5 · outbound

This paper cites ASAP7: A 7-nm finFET predictive process design kit.Microelectronics Journal, 53:105– 115, 2016.

Programmable Probabilistic Computer with 1,000,000 p-bits ASAP7: A 7-nm finFET predictive process design kit.Microelectronics Journal, 53:105– 115, 2016

Reference 61

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:9cecca2b670d536eeee98a2c2a11f60b90cc955db2d34efa4efe9dd36e351db7

Observation bdda35ef-4289-4270-8aaf-b5cf47209017 · outbound

This paper cites Universal Chiplet Interconnect Express (UCIe) Specification.UCIe Consortium, Technical Specification.

Programmable Probabilistic Computer with 1,000,000 p-bits Universal Chiplet Interconnect Express (UCIe) Specification.UCIe Consortium, Technical Specification

Reference 62

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:a4508e1ea9363f070820ca3bb46d4c54d3d7feb8a6fed30d90165f593a30e224

Observation f3cf0b20-2220-43cf-933c-6ed35000831e · outbound

This paper cites Bunch of wires: An open die-to-die interface.

Programmable Probabilistic Computer with 1,000,000 p-bits Bunch of wires: An open die-to-die interface

Reference 63

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:1befb0ca0ecf4a5f0bc8a90119a4165655af454ea9f4c7b32613d22855749cfb

Observation f1603734-4d21-4ada-ab81-e305e83cdc3e · outbound

This paper cites Foundry Monolithic 3D Unlocks Large Throughput Benefits: 3D Memory with Tucked Sense Amplifiers + Logic using Heterogeneous Silicon CMOS + Resistive RAM + Carbon Nanotube FETs.

Programmable Probabilistic Computer with 1,000,000 p-bits Foundry Monolithic 3D Unlocks Large Throughput Benefits: 3D Memory with Tucked Sense Amplifiers + Logic using Heterogeneous Silicon CMOS + Resistive RAM + Carbon Nanotube FETs

Reference 64

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:e0e52e6ad995fbab08303a0d8897c97608479c04f305437ece2bdf3e723468b2

Observation f789e9b4-042a-4b84-9de1-afd448a269f2 · outbound

This paper cites NVIDIA Blackwell Platform: Advancing Generative AI and Accelerated Computing.

Programmable Probabilistic Computer with 1,000,000 p-bits NVIDIA Blackwell Platform: Advancing Generative AI and Accelerated Computing

Reference 65

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:8c572b8feae5ae6ca89c02b05933a4c382e2b0728c4ffcc12db10e499417e957

Observation c9d0c842-87a2-462b-9b43-38118f8c5a6f · outbound

This paper cites DAC-Free p-bits: Asynchronous Self-Coloring and On-Chip Annealing.

Programmable Probabilistic Computer with 1,000,000 p-bits DAC-Free p-bits: Asynchronous Self-Coloring and On-Chip Annealing

Reference 66

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:d2a77ce063e43c8cf25ddb35bfd35ba45e69dd9184daa73f492f7d4627a1d412

Observation 00f2c516-b160-45fb-b234-868068655162 · outbound

This paper cites An integrated-circuit-based probabilistic computer that uses voltage- controlled magnetic tunnel junctions as its entropy source.Nature Electronics, 8(9):784–793, 2025.

Programmable Probabilistic Computer with 1,000,000 p-bits An integrated-circuit-based probabilistic computer that uses voltage- controlled magnetic tunnel junctions as its entropy source.Nature Electronics, 8(9):784–793, 2025

Reference 67

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:2fe0b8c435dd82cbfd0beade4690c153884028333015ce510bf9c2dc861cbd3a

Observation 35593735-0b6d-4155-81b0-a8b8552332f3 · outbound

This paper cites Experimental demonstration of an on-chip p-bit core based on stochastic magnetic tunnel junctions and 2D MoS2 transistors.Nature Communications, 15(1):4098, 2024.

Programmable Probabilistic Computer with 1,000,000 p-bits Experimental demonstration of an on-chip p-bit core based on stochastic magnetic tunnel junctions and 2D MoS2 transistors.Nature Communications, 15(1):4098, 2024

Reference 68

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:486d847697557ead7235332647f886e2accadbf030ecccd38d4df2813dc88d6a

Observation 7b8b579e-23e0-48c4-838a-674c77a58847 · outbound

This paper cites an unresolved cited work.

Programmable Probabilistic Computer with 1,000,000 p-bits Unresolved cited work

Reference 69

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:79e07d52cee608b8464a7fc4c37fb942a2ebc2d22f9a01c98c2d868438df3dd1

Observation 0bce027a-9af7-4352-a3cc-e2f3c0494bcd · outbound

This paper cites L’hypoth`ese du champ mol´eculaire et la propri´et´e ferromagn´etique.Journal de Physique Th´eorique et Appliqu´ee, 6(1):661–690, 1907.

Programmable Probabilistic Computer with 1,000,000 p-bits L’hypoth`ese du champ mol´eculaire et la propri´et´e ferromagn´etique.Journal de Physique Th´eorique et Appliqu´ee, 6(1):661–690, 1907

Reference 70

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:89f53b0cb600eef345521e585a46bd5414b68cd1d48436f920e88e54c79c4635

Observation 0b5bd6e5-0070-407b-b7e4-5bd6dbc71e4d · outbound

This paper cites Quantum correlated cluster mean-field theory applied to the transverse Ising model.Physical Review E, 93(6):062116, 2016.

Programmable Probabilistic Computer with 1,000,000 p-bits Quantum correlated cluster mean-field theory applied to the transverse Ising model.Physical Review E, 93(6):062116, 2016

Reference 71

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:2fa46ec462ef0073f82ff7bf1ba3e1e68191031aa156f1564244bc3ed49c9d0b

Observation c575e439-1fcf-46cd-8f38-cae394f0c57e · outbound

This paper cites Accelerating Adaptive Parallel Tempering with FPGA-based p-bits.

Programmable Probabilistic Computer with 1,000,000 p-bits Accelerating Adaptive Parallel Tempering with FPGA-based p-bits

Reference 72

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:90eebe75ce5f46a18f65d865c5c328130b09d0c739cb4f8cf6372028bd2a7557

Observation 44dc48c4-1424-449b-b61d-5909ae3e84c6 · outbound

This paper cites Algorithm portfolios and teams in parallel optimization.

Programmable Probabilistic Computer with 1,000,000 p-bits Algorithm portfolios and teams in parallel optimization

Reference 73

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no resolver link, observed 2026-06-25T20:44:30.520336Z

Source-reported events for the cited work

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:e114d29cc72214d95afadd6f1ad3aea3a46ebc0fd209769c33448821be3cf097

Observation 9e5a3081-0fc1-4b7e-bfc2-0714364a1b07 · outbound

This paper cites Teams of global equilibrium search algorithms for solving the weighted maximum cut problem in parallel.Cybernetics and Systems Analysis, 51(1):16–24, 2015.

Programmable Probabilistic Computer with 1,000,000 p-bits Teams of global equilibrium search algorithms for solving the weighted maximum cut problem in parallel.Cybernetics and Systems Analysis, 51(1):16–24, 2015

Reference 74

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no resolver link, observed 2026-06-25T20:44:30.520336Z

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:ba5617526d971596ce9a8f1899535f40a90e838486a9fd399003de99156bf5cd

Observation e38450ba-f4b8-45bc-837d-ad386814c10c · outbound

This paper cites CNFgen: A generator of crafted benchmarks.

Programmable Probabilistic Computer with 1,000,000 p-bits CNFgen: A generator of crafted benchmarks

Reference 75

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no resolver link, observed 2026-06-25T20:44:30.520336Z

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:b6b2a03d288df8babdf7a05583f0922dec79980df62b085998061908fbf95688

Observation c6625eec-29d3-469c-9cc9-16f52c68f058 · outbound

This paper cites In-datacenter performance analysis of a tensor processing unit.

Programmable Probabilistic Computer with 1,000,000 p-bits In-datacenter performance analysis of a tensor processing unit

Reference 76

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no resolver link, observed 2026-06-25T20:44:30.520336Z

Source-reported events for the cited work

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:85620e38277d271b5f9446f7ead4bbde9b139ba0ba283e133ddf63250fab6fd8

Observation 3af462fd-5b3f-4171-9ddc-09f812d621e0 · outbound

This paper cites NVIDIA Tesla P100: The Most Advanced Datacenter Accelerator Ever Built.

Programmable Probabilistic Computer with 1,000,000 p-bits NVIDIA Tesla P100: The Most Advanced Datacenter Accelerator Ever Built

Reference 77

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no resolver link, observed 2026-06-25T20:44:30.520336Z

Source-reported events for the cited work

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:2a87fe85213097243139e7bffad511cb9202141c0eb605369241be540398b820

Observation 6864fe06-9661-4444-b255-b51758d22d1a · outbound

This paper cites Cerebras architecture deep dive: First look inside the hardware/software co-design for deep learning.IEEE Micro, 43(3):18–30, 2023.

Programmable Probabilistic Computer with 1,000,000 p-bits Cerebras architecture deep dive: First look inside the hardware/software co-design for deep learning.IEEE Micro, 43(3):18–30, 2023

Reference 78

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no resolver link, observed 2026-06-25T20:44:30.520336Z

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:73f6ffeebdf44e0eeed1302ca7cd4b0e9e497e0ba4c4c67543f0ffce745f66a0

Observation 14e9d76c-c9e7-487b-9d61-e2e09fa713d7 · outbound

This paper cites Simba: Scaling deep-learning inference with multi-chip-module-based architecture.

Programmable Probabilistic Computer with 1,000,000 p-bits Simba: Scaling deep-learning inference with multi-chip-module-based architecture

Reference 79

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no resolver link, observed 2026-06-25T20:44:30.520336Z

Source-reported events for the cited work

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:ee4f574f044e80a6edf34ddd772f39e8cd429e36e8f93172b52bbdf236f86244

Observation a2821d4d-1ca3-4e3e-acab-94c86f477687 · outbound

This paper cites an unresolved cited work.

Programmable Probabilistic Computer with 1,000,000 p-bits Unresolved cited work

Reference 80

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no resolver link, observed 2026-06-25T20:44:30.520336Z

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source=pdf_text observed=2026-06-25T20:44:30.520336Z digest=sha256:69be3774e98ba9b4d42b6f2ec491f6976cb2117ea457a6005e9df5e89989e4b2

Pith citing papers

No inbound Pith citation observations are available.