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Paper Citation Record · LEDGER

Trainability and Mode Separation of Mixed IQP-QCBMs

As of 19 August 2026, this Paper Citation Record lists 66 of 66 outbound references and 0 inbound Pith citation observations for arXiv:2607.27883.

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

pith.paper-citation-record.v1
2607.27883 v1

Coverage vector

measured 66 of 66 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-07-31T23:47:15.141791Z

measured 66 of 66 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-19T06:32:44.657259+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

66 of 66 outbound references displayed

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External citation measurements

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Outbound references

Observation 9a036648-953b-4552-b3d9-6686ef3c572b · outbound

This paper cites Benedetti, D.

Trainability and Mode Separation of Mixed IQP-QCBMs Benedetti, D

Reference 1

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Observation a22c80e4-3b4e-4130-8283-c3a0cec86218 · outbound

This paper cites Liu and L.

Trainability and Mode Separation of Mixed IQP-QCBMs Liu and L

Reference 2

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Observation 305b74ea-3473-43e2-85c1-47784e902631 · outbound

This paper cites Coyle, D.

Trainability and Mode Separation of Mixed IQP-QCBMs Coyle, D

Reference 3

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source=pdf_text observed=2026-07-31T23:47:09.669866Z digest=sha256:db843217578012ab3a0f6d789a28cc8375879d6afeb00ab4e6b19b386bc2d424

Observation bb5a5e90-8af9-4936-843a-6326b0cdd0a9 · outbound

This paper cites Classical simulation of commuting quantum computations implies collapse of the polynomial hierarchy.

Trainability and Mode Separation of Mixed IQP-QCBMs Classical simulation of commuting quantum computations implies collapse of the polynomial hierarchy

Reference 4

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Observation 0e5b7f9b-2466-4ada-93c7-4cd3c901f52d · outbound

This paper cites Power of Quantum Generative Learning.

Trainability and Mode Separation of Mixed IQP-QCBMs Power of Quantum Generative Learning

Reference 5

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Observation 70d5e9cc-fe39-4d6f-a5b5-9044eaf8a31d · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 6

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source=pdf_text observed=2026-07-31T23:47:09.963362Z digest=sha256:c385075949415d2b874a947dacaa089036451d73d1f50f9fa65fef58bb79fe15

Observation b20c1e1d-b945-45ad-b888-c8ff129d8da8 · outbound

This paper cites Cerezo, A.

Trainability and Mode Separation of Mixed IQP-QCBMs Cerezo, A

Reference 7

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source=pdf_text observed=2026-07-31T23:47:10.036022Z digest=sha256:28e26f6a736c791653a77e3f918ed210a362d5dd5d3f8395255a951aa0f6f953

Observation 97d8da04-c0e1-40d7-83b6-a8ebcfe15403 · outbound

This paper cites Van den Nest, Simulating quantum computers with probabilistic methods, Quantum Information and Com- putation11, 784 (2011).

Trainability and Mode Separation of Mixed IQP-QCBMs Van den Nest, Simulating quantum computers with probabilistic methods, Quantum Information and Com- putation11, 784 (2011)

Reference 8

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Observation e793ac17-d013-488b-8e26-292dfc686624 · outbound

This paper cites Recio-Armengol, S.

Trainability and Mode Separation of Mixed IQP-QCBMs Recio-Armengol, S

Reference 9

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source=pdf_text observed=2026-07-31T23:47:10.170132Z digest=sha256:a0c4f570b12f68ee7aa5c0773a3bab407b83e57ad8948d95890e0bee9fd4d7b9

Observation 6e14f3d5-9998-4111-b0a5-9f28ffd45119 · outbound

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Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 10

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source=pdf_text observed=2026-07-31T23:47:10.236289Z digest=sha256:791818d2a10e30c07e55d85c1781d5796154672987fa0560b5ac9661c4223f38

Observation 40029c91-fc1f-4c64-972c-15b9b15abe49 · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 11

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source=pdf_text observed=2026-07-31T23:47:10.293388Z digest=sha256:a2f4afdab4ba933395106b7b17e669b71a6e5c05e797eba859fa42497478921e

Observation 413102aa-b389-4451-a028-a081d594ee25 · outbound

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Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 12

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source=pdf_text observed=2026-07-31T23:47:10.357356Z digest=sha256:a9ed287f5796c07d5294ab3c7d8dd8f1668119f15fd94218944b3aee2b6184ff

Observation 67ed6eae-c1e4-432c-bd58-9a2ed326ace8 · outbound

This paper cites Lerch, J.

Trainability and Mode Separation of Mixed IQP-QCBMs Lerch, J

Reference 13

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source=pdf_text observed=2026-07-31T23:47:10.416204Z digest=sha256:4b8d70cc7815fc7cb11742a8089c72e4a8e4a2c8f01556322d9ed8afc433234c

Observation 17f06734-214f-446b-82ef-49f467cfe5c7 · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 14

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source=pdf_text observed=2026-07-31T23:47:10.530621Z digest=sha256:b5ac32bee0a8325726e0e6123b7ce523f0a56dcf46a10d464d9c6e47dc5afb65

Observation d1a79a35-c4fa-4f15-9281-6c132c90bae0 · outbound

This paper cites Trainability of IQP Quantum Circuit Born Machines Under Gaussian Initialization.

Trainability and Mode Separation of Mixed IQP-QCBMs Trainability of IQP Quantum Circuit Born Machines Under Gaussian Initialization

Reference 15

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Observation 7e095544-ee26-44e7-87d8-cb3c5ea0fc4f · outbound

This paper cites Kurkin, K.

Trainability and Mode Separation of Mixed IQP-QCBMs Kurkin, K

Reference 16

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source=pdf_text observed=2026-07-31T23:47:10.730986Z digest=sha256:b6a091995d9b4c839526ed0c4a5a7ee2ef596fa7a15dfcac82fa20371886c1e2

Observation 69e8918a-6faa-4808-87d1-ad60009036ca · outbound

This paper cites Note on the Universality of Parameterized IQP Circuits with Hidden Units for Generating Probability Distributions.

Trainability and Mode Separation of Mixed IQP-QCBMs Note on the Universality of Parameterized IQP Circuits with Hidden Units for Generating Probability Distributions

Reference 17

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source=pdf_text observed=2026-07-31T23:47:10.786595Z digest=sha256:f082d51f242d561ac01844689ffa8f6af71b3666cfa7c227e490c8f2fda0497f

Observation b4722961-895e-4923-ab88-8f3d2daea4e0 · outbound

This paper cites Zhong, X.

Trainability and Mode Separation of Mixed IQP-QCBMs Zhong, X

Reference 18

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source=pdf_text observed=2026-07-31T23:47:10.877415Z digest=sha256:f752cd6f2a74f1cefb6e2d62be13e0817c79db3db4a14285500d2ff3b5de72c5

Observation f7b9dc00-89d4-438f-9ea1-1e426083fa80 · outbound

This paper cites Generative training of quantum Boltzmann machines with hidden units.

Trainability and Mode Separation of Mixed IQP-QCBMs Generative training of quantum Boltzmann machines with hidden units

Reference 19

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Observation 47caa732-7e66-4223-807d-f183565cba83 · outbound

This paper cites An IQP Born Machine for Calorimeter Image Generation at 64 Qubits with Compiled-IQP Deployment.

Trainability and Mode Separation of Mixed IQP-QCBMs An IQP Born Machine for Calorimeter Image Generation at 64 Qubits with Compiled-IQP Deployment

Reference 20

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Observation b474af8b-bd81-4867-b3d0-212e0cb6b1e4 · outbound

This paper cites Cheng, J.

Trainability and Mode Separation of Mixed IQP-QCBMs Cheng, J

Reference 21

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Observation 97c3c315-cc29-4bdf-971c-142ed0caea2b · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 22

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source=pdf_text observed=2026-07-31T23:47:11.169718Z digest=sha256:22d61776213ad91c15f56ccf18b19303bba4dbda8d120fdbbbf97f47011dc19a

Observation 7d8dbda0-e6a7-4640-9d28-538215d51d06 · outbound

This paper cites Shepherd and M.

Trainability and Mode Separation of Mixed IQP-QCBMs Shepherd and M

Reference 23

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Observation bc6bba29-36e3-483e-a71e-c9050c7b83a6 · outbound

This paper cites Gretton, K.

Trainability and Mode Separation of Mixed IQP-QCBMs Gretton, K

Reference 24

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Observation aedd243a-46e6-468e-aa59-1a3285adcb6c · outbound

This paper cites Muandet, K.

Trainability and Mode Separation of Mixed IQP-QCBMs Muandet, K

Reference 25

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Observation 7e2fc585-9f19-4a8c-89fa-63adbef80630 · outbound

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Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 26

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Observation 804e2a66-4f9b-4849-8661-f2d3898b11c8 · outbound

This paper cites Li, W.-C.

Trainability and Mode Separation of Mixed IQP-QCBMs Li, W.-C

Reference 27

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Observation 43db51aa-aa9d-4de7-9100-e8c61f4288ef · outbound

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Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 28

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Observation 9ca7ffbf-b19d-4acf-ae1c-a703ca5ada91 · outbound

This paper cites Grant, L.

Trainability and Mode Separation of Mixed IQP-QCBMs Grant, L

Reference 29

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Observation eee3da0e-bcf9-458f-92ec-f65276b4bc9a · outbound

This paper cites Zhang, L.

Trainability and Mode Separation of Mixed IQP-QCBMs Zhang, L

Reference 30

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Observation 25c1661b-9812-4378-ac88-73c90673eb78 · outbound

This paper cites Learning to learn with quantum neural networks via classical neural networks.

Trainability and Mode Separation of Mixed IQP-QCBMs Learning to learn with quantum neural networks via classical neural networks

Reference 31

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Observation e05e76f2-7302-449e-9897-1bf1b9c7e80d · outbound

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Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 32

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Observation 70bcccde-7eac-435b-953f-1ab42474a9af · outbound

This paper cites von Luxburg, A tutorial on spectral clustering, Statis- tics and Computing17, 395 (2007).

Trainability and Mode Separation of Mixed IQP-QCBMs von Luxburg, A tutorial on spectral clustering, Statis- tics and Computing17, 395 (2007)

Reference 33

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Observation 246e82b8-d35c-4007-bc0b-65e1aa47d8c8 · outbound

This paper cites Arrasmith, Z.

Trainability and Mode Separation of Mixed IQP-QCBMs Arrasmith, Z

Reference 34

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Observation 0ea2f55b-3000-4b0c-a599-24909a1f2dc7 · outbound

This paper cites Ghosh, V.

Trainability and Mode Separation of Mixed IQP-QCBMs Ghosh, V

Reference 35

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Observation 16fc6f45-7927-41b9-b2f3-dbb13e902845 · outbound

This paper cites Lecun, L.

Trainability and Mode Separation of Mixed IQP-QCBMs Lecun, L

Reference 36

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source=pdf_text observed=2026-07-31T23:47:12.111431Z digest=sha256:21371d1bd357649242288610eadcc33b4a55cfc17e6e2f2903acb691ffdcfca6

Observation 5a41d2cf-605a-405d-9f60-11a4ee3719d8 · outbound

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Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 37

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Observation 5bee1ce3-cb3a-478a-824c-497f5c6acdfe · outbound

This paper cites IQPopt: Fast optimization of instantaneous quantum polynomial circuits in JAX.

Trainability and Mode Separation of Mixed IQP-QCBMs IQPopt: Fast optimization of instantaneous quantum polynomial circuits in JAX

Reference 38

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source=pdf_text observed=2026-07-31T23:47:12.246568Z digest=sha256:13e56776c745fb2c054e9fa54ad3d911dd02b11263abb5bcab4d66fb8b65002c

Observation 6e6acb7a-38d3-44ac-81e9-8fe95df2d711 · outbound

This paper cites The Inductive Bias of Quantum Kernels.

Trainability and Mode Separation of Mixed IQP-QCBMs The Inductive Bias of Quantum Kernels

Reference 39

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source=pdf_text observed=2026-07-31T23:47:12.363988Z digest=sha256:f035224784d4ef2ed1c705895e6b4cc9a99c9dadf7cccd41394c01c8f859f234

Observation c347877d-f652-4950-8afa-122a232ec0a3 · outbound

This paper cites Outrageously Large Neural Networks: The Sparsely-Gated Mixture-of-Experts Layer.

Trainability and Mode Separation of Mixed IQP-QCBMs Outrageously Large Neural Networks: The Sparsely-Gated Mixture-of-Experts Layer

Reference 40

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source=pdf_text observed=2026-07-31T23:47:12.445161Z digest=sha256:7ed03e95357fed36bef0d58c6c2940bbaf45074153da4456e8e5b97fdb4d1e92

Observation 0475c95a-560c-4a0c-91e6-b467991eb08b · outbound

This paper cites Spectral Born machines: classically trainable quantum generative models for discrete data.

Trainability and Mode Separation of Mixed IQP-QCBMs Spectral Born machines: classically trainable quantum generative models for discrete data

Reference 41

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source=pdf_text observed=2026-07-31T23:47:12.522432Z digest=sha256:c3b221beb728481a4bcfd488afbe5434fa9701d697ba2fd45aa27ff9be8b9e46

Observation 18341079-1d51-4808-85cb-9e45189f005a · outbound

This paper cites Fast classical simulation of Harvard/QuEra IQP circuits.

Trainability and Mode Separation of Mixed IQP-QCBMs Fast classical simulation of Harvard/QuEra IQP circuits

Reference 42

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source=pdf_text observed=2026-07-31T23:47:12.562799Z digest=sha256:260f115713c687224f893abf97644675a8fddf609a880b51624ca013506c278a

Observation 1b505902-a620-4bf5-a112-a64260721450 · outbound

This paper cites Scriva, E.

Trainability and Mode Separation of Mixed IQP-QCBMs Scriva, E

Reference 43

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source=pdf_text observed=2026-07-31T23:47:12.629182Z digest=sha256:205f1b5e3bad17b508128c4ec7b16d5f5b2b54ed1f60df309b33f89d2950a5ea

Observation a9310d86-2115-4587-9f0d-f27bd41bf37c · outbound

This paper cites Demidik, C.

Trainability and Mode Separation of Mixed IQP-QCBMs Demidik, C

Reference 44

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source=pdf_text observed=2026-07-31T23:47:12.739204Z digest=sha256:6a52b01a2368a07b676d2c7d2bddd0a422e2d2d94a800da754d930e1ff2f5848

Observation 6ce824a7-5fdb-45e8-a9bd-a876f8ffba38 · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 45

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source=pdf_text observed=2026-07-31T23:47:12.846355Z digest=sha256:9d51e66f001db35be4a82a0479cc679f42aa763f0535281a956dac1382a7780a

Observation 971a5d43-e1dd-440d-81ce-19b6f73e2c78 · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 46

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source=pdf_text observed=2026-07-31T23:47:13.026592Z digest=sha256:c9fd94ea0981c99a52813c6e558c9516db3b422645c67806912a048a579ee6d4

Observation 88b674b9-0fa5-43db-b4ec-21553403fbb3 · outbound

This paper cites [8] in the main text.

Trainability and Mode Separation of Mixed IQP-QCBMs [8] in the main text

Reference 47

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source=pdf_text observed=2026-07-31T23:47:13.121631Z digest=sha256:125602c58100bf04debed90ace8f68439cba47e9e2b4c1fbc8b7a6ea47bf5747

Observation 76f5a69e-fc02-4526-94f1-2d8b25348a10 · outbound

This paper cites (12), so that one IQP-form circuit estimates the uniform mixture correlatorz A(Θ).

Trainability and Mode Separation of Mixed IQP-QCBMs (12), so that one IQP-form circuit estimates the uniform mixture correlatorz A(Θ)

Reference 48

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source=pdf_text observed=2026-07-31T23:47:13.280994Z digest=sha256:ab7a4b31054d150b746e6cb6953e50b4c5358cddf93815d07599fc62324863d8

Observation 21b9138c-7c2a-4507-8356-66d35f24b1c0 · outbound

This paper cites It fixes the branch weights and proves the estimator equivalence.

Trainability and Mode Separation of Mixed IQP-QCBMs It fixes the branch weights and proves the estimator equivalence

Reference 49

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source=pdf_text observed=2026-07-31T23:47:13.454803Z digest=sha256:529fbad3fd48f978f2db39f7559ba34eb9b20aefd30ffd9dfcf4ad4652fb83a1

Observation 454be324-7783-402c-be7c-f42817ce4d21 · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 50

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source=pdf_text observed=2026-07-31T23:47:13.605127Z digest=sha256:66cb8f7e8fab9f61602b24be523620f20ca124fb8867639e9d142b95a2d3f40e

Observation ba979f7b-e2f8-4ed9-b27f-0cc5edf66789 · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 51

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source=pdf_text observed=2026-07-31T23:47:13.724178Z digest=sha256:7b4a82e69501dda99b2682e7dfd251fedef12573a3a25158f8559fb49117f1b0

Observation f4575f9a-a058-4d81-8b7f-bb1ddad8dfc8 · outbound

This paper cites Theπ ℓ weighting enters exactly once, in step 3; the allocation of step 1 only distributes the budget and applies no second weighting.

Trainability and Mode Separation of Mixed IQP-QCBMs Theπ ℓ weighting enters exactly once, in step 3; the allocation of step 1 only distributes the budget and applies no second weighting

Reference 52

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source=pdf_text observed=2026-07-31T23:47:13.811887Z digest=sha256:a0453ffc19aebe7f44671d56986d1570c1f9062f6abde6afad5de0f62fded3a3

Observation d78be367-4b86-4896-af54-48a4ccf3f3c0 · outbound

This paper cites (A21) (Appendix A 3), each branch correlator obeysz A(θ(ℓ))∈[−1,1] as the expectation of a±1-eigenvalue Pauli word, andw A = Θ(n−|A|) is the low-body weight atσ= Θ( √n).

Trainability and Mode Separation of Mixed IQP-QCBMs (A21) (Appendix A 3), each branch correlator obeysz A(θ(ℓ))∈[−1,1] as the expectation of a±1-eigenvalue Pauli word, andw A = Θ(n−|A|) is the low-body weight atσ= Θ( √n)

Reference 53

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source=pdf_text observed=2026-07-31T23:47:13.871285Z digest=sha256:37d3cc46ab48ff513e6d9a1f09a8b2c4d15fc15bd997e603cd00e9a50b59d3c0

Observation 4f01c33f-57ce-4411-b26d-eda426e4947c · outbound

This paper cites Its curvature- to-variance step is Theorem 2 of Ref.

Trainability and Mode Separation of Mixed IQP-QCBMs Its curvature- to-variance step is Theorem 2 of Ref

Reference 54

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source=pdf_text observed=2026-07-31T23:47:13.950999Z digest=sha256:94479eeffef93b30fc019e082db47753df156d5d58cf4afda11251eb9b32186c

Observation b709e99e-25e9-42b4-9956-273e951574d2 · outbound

This paper cites We evaluate the curvature Eq.

Trainability and Mode Separation of Mixed IQP-QCBMs We evaluate the curvature Eq

Reference 55

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source=pdf_text observed=2026-07-31T23:47:14.022277Z digest=sha256:35cb6290bbdf87f76c33342fa988d8349ef02e229c155adc0d34de592c27c798

Observation 02df4d87-c470-43f5-8788-edbad58d106b · outbound

This paper cites III C and feeds it to the Master Lemma 1 to obtain the data-dependent counterpart of Theorem 1.

Trainability and Mode Separation of Mixed IQP-QCBMs III C and feeds it to the Master Lemma 1 to obtain the data-dependent counterpart of Theorem 1

Reference 56

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source=pdf_text observed=2026-07-31T23:47:14.068348Z digest=sha256:ad4a9987f2fb9bc0ac6dfce961c77a7466f7be057975f4e6807f103100aab182

Observation bbeae8a9-0fe6-4ee4-8e19-b41dc6d86500 · outbound

This paper cites Its body-order-rescaled finite-size constant is Ck,eff :=nϵ 2/k k , q k,eff :=C k,eff /n.(B32) We compute the same quantities from the 95th percentile to expose the tail.

Trainability and Mode Separation of Mixed IQP-QCBMs Its body-order-rescaled finite-size constant is Ck,eff :=nϵ 2/k k , q k,eff :=C k,eff /n.(B32) We compute the same quantities from the 95th percentile to expose the tail

Reference 57

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source=pdf_text observed=2026-07-31T23:47:14.196741Z digest=sha256:7337e6b271f39e09c79c14304ac8329a1d6f7b00974dda42539cf4a4685909af

Observation 8e4f247b-b81f-4e74-9d96-4d9d5cbe8b7b · outbound

This paper cites II C) that an ancilla-free IQP circuit is not universal [16]; we give a constructive version through the mixture.

Trainability and Mode Separation of Mixed IQP-QCBMs II C) that an ancilla-free IQP circuit is not universal [16]; we give a constructive version through the mixture

Reference 58

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source=pdf_text observed=2026-07-31T23:47:14.310929Z digest=sha256:507f4e91d16eaf83213b909d1f17e86460502df4130c54092b58f431f273a1f0

Observation 8c527900-1a17-4c56-9acd-008f4c9fe073 · outbound

This paper cites II E 1 is branch-coincident, and a mixture whose branches coincide reduces to a single ancilla-free circuit.

Trainability and Mode Separation of Mixed IQP-QCBMs II E 1 is branch-coincident, and a mixture whose branches coincide reduces to a single ancilla-free circuit

Reference 59

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source=pdf_text observed=2026-07-31T23:47:14.419503Z digest=sha256:0f9c6eed4c5a3e7df1fa963cddb2440c42883e0906dd56a246f8e51d8c78ee7a

Observation f69b61cb-3054-49b6-8909-58f67354312c · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 60

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source=pdf_text observed=2026-07-31T23:47:14.471407Z digest=sha256:f117d48097ee2bf0aaee5ccf10ebb17256bd20e340dbb93eb5b03a26096fc648

Observation ba9edbc9-2351-4d01-af13-5fcc12e53768 · outbound

This paper cites The MNIST data-agnostic runs are listed separately because they use a smaller learning rate,η= 5×10 −4, and a longer optimization budget.

Trainability and Mode Separation of Mixed IQP-QCBMs The MNIST data-agnostic runs are listed separately because they use a smaller learning rate,η= 5×10 −4, and a longer optimization budget

Reference 61

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source=pdf_text observed=2026-07-31T23:47:14.541476Z digest=sha256:92c1eeac14b5028c2250485df0c645ebc47e45301bda3b71d050dedbf33e13f3

Observation fe55c7fe-f745-4b76-8dcb-35834f9226e7 · outbound

This paper cites For the global and data-agnostic initializations, the ancilla branches are sampled uniformly, πℓ = 1 L , ℓ= 0,.

Trainability and Mode Separation of Mixed IQP-QCBMs For the global and data-agnostic initializations, the ancilla branches are sampled uniformly, πℓ = 1 L , ℓ= 0,

Reference 62

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source=pdf_text observed=2026-07-31T23:47:14.592083Z digest=sha256:ef2fbfa775bc1191fc82cb08de0f4e68eb5c496aaeaa91b4e891d8b935e0f9b5

Observation 7bb2a7c4-87e8-42cb-90b8-425315d127e1 · outbound

This paper cites The RBM family also admits quantum extensions with quantified expressivity relations to its classical form [44]; here it serves purely as a classical reference.

Trainability and Mode Separation of Mixed IQP-QCBMs The RBM family also admits quantum extensions with quantified expressivity relations to its classical form [44]; here it serves purely as a classical reference

Reference 63

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source=pdf_text observed=2026-07-31T23:47:14.732998Z digest=sha256:f611446b2e96ade32ed25ded29ffc19b33f4e71baacc9c36752a80af9f602f5f

Observation 167f99c4-eec8-489c-9577-3596fc3f8d65 · outbound

This paper cites an unresolved cited work.

Trainability and Mode Separation of Mixed IQP-QCBMs Unresolved cited work

Reference 64

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no resolver link, observed 2026-07-31T23:47:14.886781Z

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source=pdf_text observed=2026-07-31T23:47:14.886781Z digest=sha256:a4a2aa30cf8504e9020490eccbffe32fcf508bae37e8be2c21cff1a94887075b

Observation 6a129472-109e-48ae-95f7-8ae28a3625d9 · outbound

This paper cites Each ablated branch is therefore a product distribution.

Trainability and Mode Separation of Mixed IQP-QCBMs Each ablated branch is therefore a product distribution

Reference 65

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source=pdf_text observed=2026-07-31T23:47:15.035263Z digest=sha256:7eac887ff91703c6fe76a5fa6011b490c2c1fb673f776bcd9e54cf113379cc43

Observation f88d30ae-9315-49a8-8238-af4d76d2035e · outbound

This paper cites 3(e)–(h) by kernel bandwidth at each benchmark’s headline mixture size.

Trainability and Mode Separation of Mixed IQP-QCBMs 3(e)–(h) by kernel bandwidth at each benchmark’s headline mixture size

Reference 66

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source=pdf_text observed=2026-07-31T23:47:15.141791Z digest=sha256:21797faf4a7a30fbb0aa91e82705a9ce9a8ce476a237ffc425cda77e4788c00e

Pith citing papers

No inbound Pith citation observations are available.