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Paper Citation Record · LEDGER

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor

As of 24 August 2026, this Paper Citation Record lists 45 of 45 outbound references and 0 inbound Pith citation observations for arXiv:2606.11940.

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

pith.paper-citation-record.v1
2606.11940 v1

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measured 45 of 45 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-06-27T08:51:28.824338Z

measured 45 of 45 standing notices

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measured 0 of 0 inbound itemization

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45 of 45 outbound references displayed

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Outbound references

Observation bf109bfa-94bc-4a27-ab5f-c196d3a10f52 · outbound

This paper cites Integrated photonic computing beyond the von neumann architecture.ACS Photonics, 10(4):1027–1036, 2023.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Integrated photonic computing beyond the von neumann architecture.ACS Photonics, 10(4):1027–1036, 2023

Reference 1

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Observation 5376175b-095a-428f-a37c-bc410d6907cd · outbound

This paper cites Analog photonics computing for information processing, inference, and optimization.Advanced Quantum Technologies, 6(9):2300055, 2023.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Analog photonics computing for information processing, inference, and optimization.Advanced Quantum Technologies, 6(9):2300055, 2023

Reference 2

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Observation 0b3cca62-9781-4950-90a7-57b62ee32cbe · outbound

This paper cites The potential of multidimensional photonic computing.Nature Reviews Physics, 7(8):439–450, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor The potential of multidimensional photonic computing.Nature Reviews Physics, 7(8):439–450, 2025

Reference 3

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Observation 91b42c1b-7d30-4ac0-973a-c0aeb5a71a7d · outbound

This paper cites Roadmap on Neuromorphic Photonics.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Roadmap on Neuromorphic Photonics

Reference 4

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arxiv_id, observed 2026-07-03T12:38:08.298322Z

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Observation 74f07c77-dd76-4ae1-b4e7-73d312b6905e · outbound

This paper cites Integrated in-sensor computing optoelectronic device for environment-adaptable artificial retina perception application.Nano letters, 22(1):81–89, 2021.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Integrated in-sensor computing optoelectronic device for environment-adaptable artificial retina perception application.Nano letters, 22(1):81–89, 2021

Reference 5

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Observation c35eb49b-13bd-4adf-99c1-e87574f918aa · outbound

This paper cites Multimodal in-sensor computing system using integrated silicon photonic convolutional processor.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Multimodal in-sensor computing system using integrated silicon photonic convolutional processor

Reference 6

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Observation 03f03cc2-ca70-438a-8b9d-7bc4710f5a06 · outbound

This paper cites Near-sensor edge computing system enabled by a cmos compatible photonic integrated circuit platform using bilayer aln/si waveguides.Nano-Micro Letters, 17(1):261, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Near-sensor edge computing system enabled by a cmos compatible photonic integrated circuit platform using bilayer aln/si waveguides.Nano-Micro Letters, 17(1):261, 2025

Reference 7

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Observation e1d87b44-71da-4e53-96dc-ce4f6b688651 · outbound

This paper cites Technology landscape review of in-sensor photonic intelligence: from optical sensors to smart devices.AI Sensors, 1(1):5, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Technology landscape review of in-sensor photonic intelligence: from optical sensors to smart devices.AI Sensors, 1(1):5, 2025

Reference 8

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Observation 229dfbae-9ebc-4e0a-9fd8-b7af38ee7320 · outbound

This paper cites Nanosecond-latency all-optical fiber sensing with in-sensor computing.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Nanosecond-latency all-optical fiber sensing with in-sensor computing

Reference 9

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:5f798cfd6cc72db8ab36b7ff2ef653eebce4f61b4ef222c897cb65fd4a6ce5dc

Observation 312133bd-7b76-4b2a-9903-d61561a7578f · outbound

This paper cites Memory in Integrated Photonic Neural Networks: From Physical Mechanisms to Neuromorphic Architectures.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Memory in Integrated Photonic Neural Networks: From Physical Mechanisms to Neuromorphic Architectures

Reference 10

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:d6b68f789f6125435cd5876a7dbaea2365cd4a62a91c36ed21c727df9bd54f60

Observation e55c54a3-6237-4804-bfa5-f364db1d29fa · outbound

This paper cites Silicon microring resonators.Laser & Photonics Reviews, 6(1):47–73, 2012.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Silicon microring resonators.Laser & Photonics Reviews, 6(1):47–73, 2012

Reference 11

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Observation 0ff70f2d-53ff-4890-a2fc-bfd7a91e1c7e · outbound

This paper cites Nonlinear silicon photonics.Nature photonics, 4(8):535– 544, 2010.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Nonlinear silicon photonics.Nature photonics, 4(8):535– 544, 2010

Reference 12

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Observation 77d61b70-6fec-4238-a24c-c97ca7978694 · outbound

This paper cites Nonlinear silicon photonics.Journal of Optics, 19(9):093002, 2017.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Nonlinear silicon photonics.Journal of Optics, 19(9):093002, 2017

Reference 13

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Observation bfef4e69-a95e-4050-adcd-bba98f3a115d · outbound

This paper cites Johnson, Matthew Borselli, and Oskar Painter.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Johnson, Matthew Borselli, and Oskar Painter

Reference 14

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Observation 822e724a-157b-40d3-ae8a-eae76f3c3378 · outbound

This paper cites On the effect of the thermal cross-talk in a photonic feed-forward neural network based on silicon microresonators.Frontiers in Physics, 10:1093191, 2022.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor On the effect of the thermal cross-talk in a photonic feed-forward neural network based on silicon microresonators.Frontiers in Physics, 10:1093191, 2022

Reference 15

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:05298f852ab5eb289961bfecd1f39bef983797a1e33c328a169058e6792cb3c2

Observation 6ddbcca7-771e-4f5d-b084-1b31e4b147f3 · outbound

This paper cites Simplified description of self- pulsation and excitability by thermal and free-carrier effects in semiconductor microcavities.Phys.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Simplified description of self- pulsation and excitability by thermal and free-carrier effects in semiconductor microcavities.Phys

Reference 16

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Observation 37f514ec-2116-4e93-b0c8-a0ed2993b2f4 · outbound

This paper cites On the modeling of thermal and free carrier nonlinearities in silicon-on-insulator microring resonators.Optics Express, 29(3):4363–4377, 2021.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor On the modeling of thermal and free carrier nonlinearities in silicon-on-insulator microring resonators.Optics Express, 29(3):4363–4377, 2021

Reference 17

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:5f183fc6f9d1e5cf91a77ca94dfce789ac91a4ad274fc2397e469349736498bb

Observation be707344-eaca-4c8e-9ed6-687dfb70b2ff · outbound

This paper cites Optical bistability and pulsating behaviour in silicon-on-insulator ring resonator structures.Optics express, 13(23):9623– 9628, 2005.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Optical bistability and pulsating behaviour in silicon-on-insulator ring resonator structures.Optics express, 13(23):9623– 9628, 2005

Reference 18

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:f22538df7c6b836e87a983a5a7ae750024b8afaef3134967aa7017630addd1be

Observation a9a49903-66ff-48df-9ec4-0506ca3d94a2 · outbound

This paper cites Thirty years in silicon photonics: a personal view.Frontiers in Physics, page 709, 2021.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Thirty years in silicon photonics: a personal view.Frontiers in Physics, page 709, 2021

Reference 19

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:2f00f9fd7cbeb5aadb37b89420a3047635d25bd35f31fff4f901c06b83cc971b

Observation caaaa11a-a0a7-4981-b22e-074609a834df · outbound

This paper cites Chaotic dynamics in coupled resonator sequences.Optics express, 22(12):14505–14516, 2014.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Chaotic dynamics in coupled resonator sequences.Optics express, 22(12):14505–14516, 2014

Reference 20

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:b066e650a063a4a5f02bf46a21bdd412df14a42aa7497790ad4bb16f2a156d30

Observation 88f72375-1b9c-4188-a2dd-2f7afd53e63f · outbound

This paper cites Photonic neural networks based on integrated silicon microresonators.Intelligent Computing, 3:0067, 2024.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Photonic neural networks based on integrated silicon microresonators.Intelligent Computing, 3:0067, 2024

Reference 21

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:126fae9f5f5e3ee995f3d54648e66910d5ef781848f80037de44680a9402cd6b

Observation 10746862-8d4d-41b5-95a9-fc4eb82645cf · outbound

This paper cites Recent advances in distributed acoustic sensing based on phase-sensitive optical time domain reflectometry.Journal of Sensors, 2018(1):3897873, 2018.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Recent advances in distributed acoustic sensing based on phase-sensitive optical time domain reflectometry.Journal of Sensors, 2018(1):3897873, 2018

Reference 22

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Observation 236c6ee8-e996-4756-8dff-3679f59af808 · outbound

This paper cites CRC press, 2017.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor CRC press, 2017

Reference 23

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:cdbca3e4a733192e66685ce2674737ba9483865ceb2cbb2cbcd05b43723285ac

Observation 34f62f43-6c2a-43ee-8779-b96d7faa4d66 · outbound

This paper cites Seismic monitoring with distributed acoustic sensing from the near-surface to the deep oceans.Journal of Lightwave Technology, 40(5):1453–1463, 2022.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Seismic monitoring with distributed acoustic sensing from the near-surface to the deep oceans.Journal of Lightwave Technology, 40(5):1453–1463, 2022

Reference 24

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Observation ea2c6dca-89e0-4a9d-be65-b29674cc17f2 · outbound

This paper cites Distributed acoustic sensing (das) for large-scale urban monitoring and seismic hazard mitigation using preexisting telecommunication infrastructure.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Distributed acoustic sensing (das) for large-scale urban monitoring and seismic hazard mitigation using preexisting telecommunication infrastructure

Reference 25

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Observation eb11f118-e9da-4da3-bdd5-8ad1abd8ac09 · outbound

This paper cites an unresolved cited work.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Unresolved cited work

Reference 26

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:79705ff8d89ffb7bf7a3b58ccf785f94f35c2b0515de0817f20cdacfbaabdac2

Observation d39f4ed0-c44a-424c-8153-e09fa4ee25b0 · outbound

This paper cites Machine-learning-assisted leak detection using distributed temperature and acoustic sensors.IEEE Sensors Journal, 24(2):1520–1531, 2023.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Machine-learning-assisted leak detection using distributed temperature and acoustic sensors.IEEE Sensors Journal, 24(2):1520–1531, 2023

Reference 27

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:7c601691ed4fadfd5fab9b1e0f3efadd92f55c4d3a10f8429aaa04574b1f4cf7

Observation 09e798b3-9b40-49aa-99d8-a2d323d7e6b5 · outbound

This paper cites Design and evaluation of a cloud computing system for real-time measurements in polarization-independent long-range das based on coherent detection.Sensors, 24(24):8194, 2024.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Design and evaluation of a cloud computing system for real-time measurements in polarization-independent long-range das based on coherent detection.Sensors, 24(24):8194, 2024

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:d59844d2f4cd3e342c261e3acc876c6dedf2fcd8cf96da9279602288e6314822

Observation d2fc3459-2879-467f-baea-77a8e006c4eb · outbound

This paper cites Strategies for mitigating polarization fading in a das with homodyne detection and delayed self-mixing.Journal of Physics: Photonics, 7(4):045035, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Strategies for mitigating polarization fading in a das with homodyne detection and delayed self-mixing.Journal of Physics: Photonics, 7(4):045035, 2025

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:1d2059b626880b87e01d7f043c6d555218ab5a0946d608f22021b77f777afe2a

Observation 9a815367-5cb3-428d-a3ed-202dfad6a96f · outbound

This paper cites Distributed optical fiber vibration sensing using phase-generated carrier demodulation algorithm.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Distributed optical fiber vibration sensing using phase-generated carrier demodulation algorithm

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:c6172d9e4b0395be3516e49de36f6d3fd20bc45e05da9f9ea491d2e1dbd9f9bb

Observation 80280adc-9f9f-4085-b6ea-aba216377b77 · outbound

This paper cites Adaptable pulse compression in ϕ-OTDR with direct digital synthesis of probe waveforms and rigorously defined nonlinear chirping.IEEE Photonics Journal, 14(2):1–11, 2022.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Adaptable pulse compression in ϕ-OTDR with direct digital synthesis of probe waveforms and rigorously defined nonlinear chirping.IEEE Photonics Journal, 14(2):1–11, 2022

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:6fd0b3e5053a80d1b0a79d14f08ab8ea2296fe0534d96849f441766a13d92ef3

Observation 1ff45043-a3c2-4a0d-97c9-262e8f8831e2 · outbound

This paper cites Cascadable excitability in microrings.Optics express, 20(18):20292–20308, 2012.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Cascadable excitability in microrings.Optics express, 20(18):20292–20308, 2012

Reference 32

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:5ba1907d29b9c9dd602be312f4054fd4b4d6e1357ff218dfd66a8195b115ec10

Observation 15133af9-66f0-4d55-ae02-efa165fe56c9 · outbound

This paper cites All-optical silicon microring spiking neuron.Photonics Research, 10(4):939–946, 2022.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor All-optical silicon microring spiking neuron.Photonics Research, 10(4):939–946, 2022

Reference 33

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no resolver link, observed 2026-06-27T08:51:28.824338Z

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:fb67d8899e03f0b0d1f4ae7b8d9c3d32bc5f40c0c2e8a68d5984449c294332b9

Observation fee0716c-09a2-46eb-b939-11e39bbe9ed7 · outbound

This paper cites Rigorous dynamic model of a silicon ring resonator with phase change material for a neuromorphic node.Optics Express, 30(14):25177– 25194, 2022.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Rigorous dynamic model of a silicon ring resonator with phase change material for a neuromorphic node.Optics Express, 30(14):25177– 25194, 2022

Reference 34

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no resolver link, observed 2026-06-27T08:51:28.824338Z

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:e07fcf91804ff1bc44848ab8da54d19d568ed554dc7ca797eec722fe2771b000

Observation ee38ba58-3c2f-4e3d-8e06-cbfafa014af3 · outbound

This paper cites Exploring the potential of self-pulsing optical microresonators for spiking neural networks and sensing.Communications Physics, 7(1):380, 2024.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Exploring the potential of self-pulsing optical microresonators for spiking neural networks and sensing.Communications Physics, 7(1):380, 2024

Reference 35

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no resolver link, observed 2026-06-27T08:51:28.824338Z

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:a10bca958ca7ed3696048a733f55f8957aca77d1b5d8fba11dcf4a744b302ab5

Observation da838ebc-e9b8-402f-80c2-b02c6b91246a · outbound

This paper cites All-optical spiking processing and reservoir computing with a passive silicon microring and wavelength-time division multiplexing.Photonics Research, 13(9):2641–2653, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor All-optical spiking processing and reservoir computing with a passive silicon microring and wavelength-time division multiplexing.Photonics Research, 13(9):2641–2653, 2025

Reference 36

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no resolver link, observed 2026-06-27T08:51:28.824338Z

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:0ef3f8152507b5934d41c2ed57bab2cd14b1ce72ce5b50b272a21a4e44778f65

Observation d0c2af65-99f3-45cc-8df7-b13d9c07dc5e · outbound

This paper cites Photonic neuromorphic processing with on-chip electrically-driven microring spiking neuron.Laser & Photonics Reviews, 19(3):2400604, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Photonic neuromorphic processing with on-chip electrically-driven microring spiking neuron.Laser & Photonics Reviews, 19(3):2400604, 2025

Reference 37

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:efcb48e790e24c619c9603c56146362a9b2973e5ef4439d6d9ba293d6d7c8783

Observation 777221b9-efbf-4ab7-86c0-ef59a57a7a69 · outbound

This paper cites Micro ring resonators as building blocks for an all-optical high-speed reservoir-computing bit-pattern-recognition system.JOSA B, 30(11):3048–3055, 2013.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Micro ring resonators as building blocks for an all-optical high-speed reservoir-computing bit-pattern-recognition system.JOSA B, 30(11):3048–3055, 2013

Reference 38

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no resolver link, observed 2026-06-27T08:51:28.824338Z

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:82ebb43687da2ea2d1d6fd52d390f85e20e6d1e54f9d0f34d7c96f66a2f6b1a1

Observation 04659308-09c7-45e8-8e87-8555b95bb691 · outbound

This paper cites Reservoir computing based on a silicon microring and time multiplexing for binary and analog operations.Scientific Reports, 11(1):15642, 2021.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Reservoir computing based on a silicon microring and time multiplexing for binary and analog operations.Scientific Reports, 11(1):15642, 2021

Reference 39

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no resolver link, observed 2026-06-27T08:51:28.824338Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:efa32fe99247ad246c1cb2aecf45de5678ccde51f1ef291fbc0f07664effb192

Observation 4c902a4d-d434-4bae-9eba-8578f93b4d7d · outbound

This paper cites Time delay reservoir computing with a silicon microring resonator and a fiber-based optical feedback loop.Optics Express, 32(8):13419–13437, 2024.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Time delay reservoir computing with a silicon microring resonator and a fiber-based optical feedback loop.Optics Express, 32(8):13419–13437, 2024

Reference 40

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no resolver link, observed 2026-06-27T08:51:28.824338Z

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:adb1e8ae6e2e83949f70c331186f3ec08763737679d6485c2170e92a4f782ee9

Observation 4e2ae596-afd3-447f-9b4a-15b23e4b580a · outbound

This paper cites Emergent self-adaptation in an integrated photonic neural network for backpropagation-free learning.Advanced Science, 12(2):2404920, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Emergent self-adaptation in an integrated photonic neural network for backpropagation-free learning.Advanced Science, 12(2):2404920, 2025

Reference 41

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:3e35e3a7e874ae89d18dc43f285ff6dce2cf729328e38915247ebfabde4d95c1

Observation e59a8868-a21b-4895-a96e-70178c4e8711 · outbound

This paper cites Reservoir computing with all-optical non-fading memory in a self-pulsing microresonator network.Advanced Optical Materials, 13(11):2403133, 2025.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Reservoir computing with all-optical non-fading memory in a self-pulsing microresonator network.Advanced Optical Materials, 13(11):2403133, 2025

Reference 42

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no resolver link, observed 2026-06-27T08:51:28.824338Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:b1c387f348d54d5702df212133d51326ad5cd7a929d289bc36d5253d4f93d036

Observation 357d28c1-a700-43dc-8712-7294f14d4cd8 · outbound

This paper cites Experimental Investigation of Time Series Classification using a Self-Pulsing Microring Resonator Network.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Experimental Investigation of Time Series Classification using a Self-Pulsing Microring Resonator Network

Reference 43

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verified exact
local_arxiv, observed 2026-07-03T12:38:08.292212Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.

source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:2534cd403be241cfecc7ecfe9378bde7b4fbde0856bbb8955ef526a125662928

Observation 5343ff5a-ae61-4918-b26e-8fc437eaebf9 · outbound

This paper cites Photonic neuromorphic processing with coupled spiking silicon microrings.arXiv preprint arXiv:2602.05918, 2026.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor Photonic neuromorphic processing with coupled spiking silicon microrings.arXiv preprint arXiv:2602.05918, 2026

Reference 44

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verified exact
arxiv_id, observed 2026-07-03T12:38:08.295118Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.

source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:52957e92f98e447dd96facb65c59f626fa41560acbe72929d4b8cada1bee79a8

Observation 53a2bd85-00f2-4dcf-9067-b83367160127 · outbound

This paper cites A compact source for a distributed acoustic sensor using a miniaturized EYDFA and a direct digital synthesis module.

Self-Pulsing Microring Resonator Networks for Bandwidth-Efficient Event Detection in an Optical Fiber Sensor A compact source for a distributed acoustic sensor using a miniaturized EYDFA and a direct digital synthesis module

Reference 45

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source=pdf_text observed=2026-06-27T08:51:28.824338Z digest=sha256:ee1bb574410d963e698622b90de4fc13675910c131cf0f008ddfb4f178d2f899

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