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Paper Citation Record · LEDGER

Non-reciprocity drives a Brownian dimer out of equilibrium

As of 20 August 2026, this Paper Citation Record lists 33 of 33 outbound references and 0 inbound Pith citation observations for arXiv:2607.27740.

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pith.paper-citation-record.v1
2607.27740 v1

Coverage vector

measured 33 of 33 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-01T02:18:05.170795Z

measured 33 of 33 standing notices

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

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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

33 of 33 outbound references displayed

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Outbound references

Observation b1bfb1ca-ba60-491c-bcc9-7587767438c7 · outbound

This paper cites Oxford University Press, 2003.

Non-reciprocity drives a Brownian dimer out of equilibrium Oxford University Press, 2003

Reference 1

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Observation f011072d-268b-412f-ad11-762e695cf698 · outbound

This paper cites Classical mechanics, volume 2.

Non-reciprocity drives a Brownian dimer out of equilibrium Classical mechanics, volume 2

Reference 2

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source=pdf_text observed=2026-08-01T02:18:05.095043Z digest=sha256:e6806701d5dfa471177f11c57a62688dca3194824bb173249b2a30e965a40937

Observation 924a611d-6c37-4f9a-8caf-1893cbb878b2 · outbound

This paper cites Hydrodynamics of soft active matter.Reviews of modern physics, 85(3):1143– 1189, 2013.

Non-reciprocity drives a Brownian dimer out of equilibrium Hydrodynamics of soft active matter.Reviews of modern physics, 85(3):1143– 1189, 2013

Reference 3

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source=pdf_text observed=2026-08-01T02:18:05.097932Z digest=sha256:5fbfaef366b84462b8033c1d4aae36cc0ec10428e88d2eeadeaef26c85c76497

Observation 558feaf8-aa03-412c-ad9d-e73ee6c19ec4 · outbound

This paper cites Active particles in complex and crowded environ- ments.Reviews of modern physics, 88(4):045006, 2016.

Non-reciprocity drives a Brownian dimer out of equilibrium Active particles in complex and crowded environ- ments.Reviews of modern physics, 88(4):045006, 2016

Reference 4

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source=pdf_text observed=2026-08-01T02:18:05.100813Z digest=sha256:a742378998d30903a5a48299c5b9314d36787579c4aaf425b3636ec88b0e03ea

Observation eba0cd7e-51a8-420b-836f-7c84cd7c9f3d · outbound

This paper cites Large-scale pat- terns in a minimal cognitive flocking model: Incidental leaders, nematic patterns, and aggregates.Physical Re- view Letters, 117(24):248001, 2016.

Non-reciprocity drives a Brownian dimer out of equilibrium Large-scale pat- terns in a minimal cognitive flocking model: Incidental leaders, nematic patterns, and aggregates.Physical Re- view Letters, 117(24):248001, 2016

Reference 5

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Observation b74906a0-c0a9-4df5-bb40-080efc6f9c66 · outbound

This paper cites Intermittent collective motion in sheep results from al- ternating the role of leader and follower.Nature Physics, 18(12):1494–1501, 2022.

Non-reciprocity drives a Brownian dimer out of equilibrium Intermittent collective motion in sheep results from al- ternating the role of leader and follower.Nature Physics, 18(12):1494–1501, 2022

Reference 6

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source=pdf_text observed=2026-08-01T02:18:05.106124Z digest=sha256:471143a5775a4b086895e3cd53f80db67eb351da78ab84c323f69f06dabffff6

Observation d3587120-4520-4e5c-a717-b07c9e5d1615 · outbound

This paper cites Non-reciprocal phase transitions.Na- ture, 592(7854):363–369, 2021.

Non-reciprocity drives a Brownian dimer out of equilibrium Non-reciprocal phase transitions.Na- ture, 592(7854):363–369, 2021

Reference 7

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Observation a2df921e-1767-4bdc-8e84-93580216282d · outbound

This paper cites Cooperative dynamics in two-component out-of-equilibrium systems: molecular ‘spinning tops’.

Non-reciprocity drives a Brownian dimer out of equilibrium Cooperative dynamics in two-component out-of-equilibrium systems: molecular ‘spinning tops’

Reference 8

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source=pdf_text observed=2026-08-01T02:18:05.110983Z digest=sha256:b60af5874c26f9629e0b6c05b2ee688439e121a2ff33131afac134db105ea11c

Observation 7b385126-7de1-4e42-9ae1-88399e50e289 · outbound

This paper cites Brownian gyrator: A minimal heat engine on the nanoscale.Physical review letters, 99(23):230602, 2007.

Non-reciprocity drives a Brownian dimer out of equilibrium Brownian gyrator: A minimal heat engine on the nanoscale.Physical review letters, 99(23):230602, 2007

Reference 9

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source=pdf_text observed=2026-08-01T02:18:05.113498Z digest=sha256:fc28a383f1919d799f54343a558e8f7c4cb8909119dd0366b6458be670ced553

Observation 42863555-5bd9-48fa-9226-54715540f244 · outbound

This paper cites Two-temperature brownian dynamics of a particle in a confining potential.Physical Review E, 97(5):052121, 2018.

Non-reciprocity drives a Brownian dimer out of equilibrium Two-temperature brownian dynamics of a particle in a confining potential.Physical Review E, 97(5):052121, 2018

Reference 10

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Observation e042f0c1-0011-45e9-a4d7-560a033ef90d · outbound

This paper cites Microscopic gyration of a brownian ellipsoid.Proceedings of the Royal Soci- ety A Mathematical Physical and Engineering Science, 482(2331):20250754, 2026.

Non-reciprocity drives a Brownian dimer out of equilibrium Microscopic gyration of a brownian ellipsoid.Proceedings of the Royal Soci- ety A Mathematical Physical and Engineering Science, 482(2331):20250754, 2026

Reference 11

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source=pdf_text observed=2026-08-01T02:18:05.118545Z digest=sha256:eb470e5ab7e261c09ee7b6cd4558a5ac77aeb6230d92c17926ff69b6e79bf5be

Observation 456aba58-03a0-4d4f-aaa2-e7203467baf4 · outbound

This paper cites Odd transport in a two-temperature Brownian dimer.

Non-reciprocity drives a Brownian dimer out of equilibrium Odd transport in a two-temperature Brownian dimer

Reference 12

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Observation f6df2dcf-9bc1-4fd6-a275-6ad2173b183e · outbound

This paper cites Elec- trical autonomous brownian gyrator.Physical Review E, 96(3):032123, 2017.

Non-reciprocity drives a Brownian dimer out of equilibrium Elec- trical autonomous brownian gyrator.Physical Review E, 96(3):032123, 2017

Reference 13

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Observation ddbccda0-5dc6-4c49-8e77-34d4fccee1b4 · outbound

This paper cites Quadrupolar gyration of a brownian particle in a confining ring.npj Soft Matter, 2(1):5, 2026.

Non-reciprocity drives a Brownian dimer out of equilibrium Quadrupolar gyration of a brownian particle in a confining ring.npj Soft Matter, 2(1):5, 2026

Reference 14

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Observation 25d8941e-ec1c-496f-8520-1cf354025ada · outbound

This paper cites Inertial effects on the brownian gyrator.

Non-reciprocity drives a Brownian dimer out of equilibrium Inertial effects on the brownian gyrator

Reference 15

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source=pdf_text observed=2026-08-01T02:18:05.128695Z digest=sha256:0faaa20916515617472ea653b3ee2d130113c4a32c2e90627a7244ef0a8f600d

Observation 7b7d6297-4888-4c04-92b4-592a052638c3 · outbound

This paper cites Asymmetry relations and effective tem- peratures for biased brownian gyrators.Physical Review E, 98(4):042149, 2018.

Non-reciprocity drives a Brownian dimer out of equilibrium Asymmetry relations and effective tem- peratures for biased brownian gyrators.Physical Review E, 98(4):042149, 2018

Reference 16

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source=pdf_text observed=2026-08-01T02:18:05.131144Z digest=sha256:4b2595040b8ed1754c7479a692a088fb6b562301c99e170db85b91f88c6667d6

Observation d328bd3a-779b-450c-836d-38709f39c494 · outbound

This paper cites Inferring entropy production in anhar- monic brownian gyrators.Physical Review Research, 4(4):043080, 2022.

Non-reciprocity drives a Brownian dimer out of equilibrium Inferring entropy production in anhar- monic brownian gyrators.Physical Review Research, 4(4):043080, 2022

Reference 17

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Observation e8513d4f-956d-4991-b505-03fbc8f6e042 · outbound

This paper cites Autonomous Brownian gyrators: a study on gyrating characteristics.

Non-reciprocity drives a Brownian dimer out of equilibrium Autonomous Brownian gyrators: a study on gyrating characteristics

Reference 18

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source=pdf_text observed=2026-08-01T02:18:05.136037Z digest=sha256:8f46ca22c0397e0e9412778c0a9a7bcd9d92f76e748858ce60e7c3fa4fbd3788

Observation aed57a3b-8774-423c-9798-cb5da71e052f · outbound

This paper cites Active elastic dimers: Self-propulsion and current rever- sal on a featureless track.Physical Review E—Statistical, 9 Nonlinear, and Soft Matter Physics, 77(2):020102, 2008.

Non-reciprocity drives a Brownian dimer out of equilibrium Active elastic dimers: Self-propulsion and current rever- sal on a featureless track.Physical Review E—Statistical, 9 Nonlinear, and Soft Matter Physics, 77(2):020102, 2008

Reference 19

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source=pdf_text observed=2026-08-01T02:18:05.138806Z digest=sha256:a9317ed510703df2e52e1dab7ff9cec1fd4e4b9b1118404572cf87ef10598dfa

Observation 908f2cb6-46ca-4879-b422-02cccc72f7ca · outbound

This paper cites Exact solution of a brownian inchworm model for self- propulsion.Journal of Statistical Mechanics: Theory and Experiment, 2008(11):P11008, 2008.

Non-reciprocity drives a Brownian dimer out of equilibrium Exact solution of a brownian inchworm model for self- propulsion.Journal of Statistical Mechanics: Theory and Experiment, 2008(11):P11008, 2008

Reference 20

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source=pdf_text observed=2026-08-01T02:18:05.141283Z digest=sha256:aae29aa2ad52f532e2bdb933b4a39152973f97f327e406dc372e7e4bb62db24b

Observation f702f291-eebd-4dd3-b26f-39bbc5fe5090 · outbound

This paper cites Structure-based model of the stepping motor of pcra helicase.Biophysical journal, 91(6):2097–2114, 2006.

Non-reciprocity drives a Brownian dimer out of equilibrium Structure-based model of the stepping motor of pcra helicase.Biophysical journal, 91(6):2097–2114, 2006

Reference 21

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Observation 2118200e-fdb7-40d5-8ff1-116806e50de7 · outbound

This paper cites Self-polarization and directional motility of cytoplasm.Current Biology, 9(1):S1, 1999.

Non-reciprocity drives a Brownian dimer out of equilibrium Self-polarization and directional motility of cytoplasm.Current Biology, 9(1):S1, 1999

Reference 22

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source=pdf_text observed=2026-08-01T02:18:05.146112Z digest=sha256:750400c79e6df92bdaf6b260f5a8b5f56a1fe9308a0089cc60352a4d746d7a49

Observation 2f29b80e-29d7-45cb-91ad-0919bb6e8117 · outbound

This paper cites Chromatin remodelers as active brownian dimers.Journal of Physics A: Mathe- matical and Theoretical, 52(8):085601, 2019.

Non-reciprocity drives a Brownian dimer out of equilibrium Chromatin remodelers as active brownian dimers.Journal of Physics A: Mathe- matical and Theoretical, 52(8):085601, 2019

Reference 23

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Observation 89a26626-29ad-4ee0-aecf-eb42c43fdb98 · outbound

This paper cites monomers.

Non-reciprocity drives a Brownian dimer out of equilibrium monomers

Reference 24

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Observation 1f0246ba-5c15-4bd0-b43e-ec437070bbf1 · outbound

This paper cites The mechanism of myosin vi translocation and its load- induced anchoring.Cell, 116(5):737–749, 2004.

Non-reciprocity drives a Brownian dimer out of equilibrium The mechanism of myosin vi translocation and its load- induced anchoring.Cell, 116(5):737–749, 2004

Reference 25

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source=pdf_text observed=2026-08-01T02:18:05.150919Z digest=sha256:cd194e5fbec42af515d85ad692c9a92dc0abcb67a97537529b02aa5d326759ba

Observation 834d073f-18e9-45dd-b3c2-40b726fd329d · outbound

This paper cites The way things move: looking under the hood of molecular motor pro- teins.Science, 288(5463):88–95, 2000.

Non-reciprocity drives a Brownian dimer out of equilibrium The way things move: looking under the hood of molecular motor pro- teins.Science, 288(5463):88–95, 2000

Reference 26

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source=pdf_text observed=2026-08-01T02:18:05.153298Z digest=sha256:e68e8e9c287741d603363778c5a6c540e86b8f9bae10b6f7447416a0b238248f

Observation 9aa9da18-512a-4f7e-a970-bcab7fec1cd7 · outbound

This paper cites Shear viscosity of two-state enzyme solutions.Physical Review E, 101(1):012610, 2020.

Non-reciprocity drives a Brownian dimer out of equilibrium Shear viscosity of two-state enzyme solutions.Physical Review E, 101(1):012610, 2020

Reference 27

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source=pdf_text observed=2026-08-01T02:18:05.155792Z digest=sha256:e82ed28e8f1a3b4990acf2dc26273ea6f906ab5f0e1dab29eb93cd191b10f451

Observation 90c2a470-10d4-4c1f-a43f-442901525c05 · outbound

This paper cites A molecular origin of non-reciprocal interactions between interacting active catalysts.Chem, 10(4):1147– 1159, 2024.

Non-reciprocity drives a Brownian dimer out of equilibrium A molecular origin of non-reciprocal interactions between interacting active catalysts.Chem, 10(4):1147– 1159, 2024

Reference 28

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Observation 2195abb9-bdd4-44da-9e8c-aadac3c29036 · outbound

This paper cites Non-reciprocal chemotactic movement in enzyme cascade under flow-free conditions.Cell Reports Physical Science, 6(7), 2025.

Non-reciprocity drives a Brownian dimer out of equilibrium Non-reciprocal chemotactic movement in enzyme cascade under flow-free conditions.Cell Reports Physical Science, 6(7), 2025

Reference 29

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Observation 1835f470-ee1d-43ae-a862-3dabf6e78b56 · outbound

This paper cites Statistical mechanics where newton’s third law is broken.Physical Review X, 5(1):011035, 2015.

Non-reciprocity drives a Brownian dimer out of equilibrium Statistical mechanics where newton’s third law is broken.Physical Review X, 5(1):011035, 2015

Reference 30

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Observation edd67602-d5d2-4ff1-9d13-06d625f844fe · outbound

This paper cites Irreversibility, heat and information flows induced by non-reciprocal in- teractions.New Journal of Physics, 22(12):123051, 2020.

Non-reciprocity drives a Brownian dimer out of equilibrium Irreversibility, heat and information flows induced by non-reciprocal in- teractions.New Journal of Physics, 22(12):123051, 2020

Reference 31

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Observation 0a4cd9d0-ed3b-420a-8125-513cdafe6eba · outbound

This paper cites Courier Corporation, 2008.

Non-reciprocity drives a Brownian dimer out of equilibrium Courier Corporation, 2008

Reference 32

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source=pdf_text observed=2026-08-01T02:18:05.168181Z digest=sha256:d199131181194f9e886100eb304aa020a9f09070113565d38b9ebba2e296c7f2

Observation 686e0141-8daa-4a58-8ff4-45f1600dd864 · outbound

This paper cites Ex- perimental realization of a minimal microscopic heat en- gine.Physical Review E, 96(5):052106, 2017.

Non-reciprocity drives a Brownian dimer out of equilibrium Ex- perimental realization of a minimal microscopic heat en- gine.Physical Review E, 96(5):052106, 2017

Reference 33

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