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Paper Citation Record · LEDGER

Quantum modeling of radical pair magnetic sensor based on electric dipole moment

As of 21 August 2026, this Paper Citation Record lists 44 of 44 outbound references and 0 inbound Pith citation observations for arXiv:2510.13840.

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pith.paper-citation-record.v1
2510.13840 v2

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measured 44 of 44 reference resolution

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Outbound references

Observation 15ae39a2-5b3a-4dc1-b368-ff6b546a0ae6 · outbound

This paper cites The interaction of stars and magnetic field in the orientation system of night migrating birds.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment The interaction of stars and magnetic field in the orientation system of night migrating birds

Reference 1

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Observation 16416c77-e81e-42f0-a260-c72894936e35 · outbound

This paper cites an unresolved cited work.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Unresolved cited work

Reference 2

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Observation 45802a40-eab2-4b8d-88c1-11db3a065880 · outbound

This paper cites The discovery of the use of magnetic navigational information.Journal of Comparative Physiology A, 208(1):9–18, 2022.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment The discovery of the use of magnetic navigational information.Journal of Comparative Physiology A, 208(1):9–18, 2022

Reference 3

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Observation 41631a43-0d75-4bb5-8d9e-ecfb206acaa0 · outbound

This paper cites Over 50 years of behavioural evidence on the magnetic sense in animals: what has been learnt and how?The European Physical Journal Special Topics, 232(2): 269–278, 2023.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Over 50 years of behavioural evidence on the magnetic sense in animals: what has been learnt and how?The European Physical Journal Special Topics, 232(2): 269–278, 2023

Reference 4

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Observation d6ccd203-b529-4016-b821-e6eca41ae7c4 · outbound

This paper cites Navigation by magnetic signatures in a realistic model of earth’s magnetic field.Bioinspiration & Biomimetics, 19 (3):036006, 2024.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Navigation by magnetic signatures in a realistic model of earth’s magnetic field.Bioinspiration & Biomimetics, 19 (3):036006, 2024

Reference 5

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Observation c441a238-3fbd-4c93-86cb-f0b72289967c · outbound

This paper cites Finding a worm’s internal compass.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Finding a worm’s internal compass

Reference 6

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Observation 99322108-679f-4bdc-9ee2-a529f1d615a2 · outbound

This paper cites Identifying cellular and molec- ular mechanisms for magnetosensation.Annual review of neuroscience, 40 (1):231–250, 2017.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Identifying cellular and molec- ular mechanisms for magnetosensation.Annual review of neuroscience, 40 (1):231–250, 2017

Reference 7

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Observation 5a69f26e-f440-4fd8-b8eb-2cb13bb2f01b · outbound

This paper cites The symbiotic magnetic-sensing hypoth- esis: do magnetotactic bacteria underlie the magnetic sensing capability of animals?Movement ecology, 5(1):22, 2017.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment The symbiotic magnetic-sensing hypoth- esis: do magnetotactic bacteria underlie the magnetic sensing capability of animals?Movement ecology, 5(1):22, 2017

Reference 8

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Observation dfeff0de-8dee-41f5-ae51-e50678d5d583 · outbound

This paper cites Radio frequency magnetic fields disrupt magnetoreception in american cockroach.Journal of Experimental Biology, 212(21):3473–3477, 2009.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Radio frequency magnetic fields disrupt magnetoreception in american cockroach.Journal of Experimental Biology, 212(21):3473–3477, 2009

Reference 9

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Observation e9fc8686-ee66-4165-aa63-eafd74537316 · outbound

This paper cites Cryptochrome 2 mediates directional magnetoreception in cockroaches.Proceedings of the National Academy of Sciences, 113(6): 1660–1665, 2016.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Cryptochrome 2 mediates directional magnetoreception in cockroaches.Proceedings of the National Academy of Sciences, 113(6): 1660–1665, 2016

Reference 10

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Observation f191da9a-f500-43f6-a731-b9e4b55fde01 · outbound

This paper cites Magnetic sensing through the abdomen of the honey bee.Scien- tific reports, 6(1):23657, 2016.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Magnetic sensing through the abdomen of the honey bee.Scien- tific reports, 6(1):23657, 2016

Reference 11

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Observation afbae767-6b94-49f3-90f4-72e0e6a3463a · outbound

This paper cites The radical pair mech- anism and the avian chemical compass: Quantum coherence and entangle- ment.International Journal of Quantum Chemistry, 115(19):1327–1341, 2015.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment The radical pair mech- anism and the avian chemical compass: Quantum coherence and entangle- ment.International Journal of Quantum Chemistry, 115(19):1327–1341, 2015

Reference 12

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Observation 1513c3af-4ac0-443a-9a9e-f322f6c6d733 · outbound

This paper cites The mag- netic compass of birds: the role of cryptochrome.Frontiers in physiology, 12:667000, 2021.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment The mag- netic compass of birds: the role of cryptochrome.Frontiers in physiology, 12:667000, 2021

Reference 13

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Observation dfdc5228-6a4c-4f93-9fd4-dbad57c3deeb · outbound

This paper cites Magnetoreception in birds.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Magnetoreception in birds

Reference 14

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Observation 664a41a3-701b-444c-9fbb-4f46090ee08b · outbound

This paper cites Magne- toreception in fish.Journal of Fish Biology, 95(1):73–91, 2019.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Magne- toreception in fish.Journal of Fish Biology, 95(1):73–91, 2019

Reference 15

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Observation b126342c-bbd7-462e-8c71-df46ff7b75f8 · outbound

This paper cites Magnetoreception in 24 laboratory mice: sensitivity to extremely low-frequency fields exceeds 33 nt at 30 hz.Journal of the Royal Society Interface, 10(81):20121046, 2013.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Magnetoreception in 24 laboratory mice: sensitivity to extremely low-frequency fields exceeds 33 nt at 30 hz.Journal of the Royal Society Interface, 10(81):20121046, 2013

Reference 16

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Observation fb06c6b8-81ff-406c-8cf5-01922679d872 · outbound

This paper cites Ev- idence for plasticity in magnetic nest-building orientation in laboratory mice.Animal Behaviour, 138:93–100, 2018.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Ev- idence for plasticity in magnetic nest-building orientation in laboratory mice.Animal Behaviour, 138:93–100, 2018

Reference 17

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Observation 51e46c0e-c928-4ea3-bb34-125d5ad47f07 · outbound

This paper cites Magnetoreception in the wood mouse (apodemus sylvaticus): influence of weak frequency- modulated radio frequency fields.Scientific reports, 5(1):9917, 2015.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Magnetoreception in the wood mouse (apodemus sylvaticus): influence of weak frequency- modulated radio frequency fields.Scientific reports, 5(1):9917, 2015

Reference 18

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Observation 3a01b279-51ed-4f0c-9c4f-5c29c6ae3a73 · outbound

This paper cites The quantum needle of the avian magnetic compass.Proceedings of the National Academy of Sciences, 113(17):4634–4639, 2016.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment The quantum needle of the avian magnetic compass.Proceedings of the National Academy of Sciences, 113(17):4634–4639, 2016

Reference 19

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Observation aed5fb6b-8baa-4f27-bf5e-ed7fcd29edc4 · outbound

This paper cites An open quan- tum system approach to the radical pair mechanism.Scientific reports, 8 (1):15719, 2018.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment An open quan- tum system approach to the radical pair mechanism.Scientific reports, 8 (1):15719, 2018

Reference 20

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Observation 9bdb9ebd-98e6-4203-88ce-b7be5a458e7a · outbound

This paper cites Theoretical insights into the formation and stability of radical oxygen species in cryptochromes.Physical Chemistry Chemical Physics, 21(17):8874–8882, 2019.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Theoretical insights into the formation and stability of radical oxygen species in cryptochromes.Physical Chemistry Chemical Physics, 21(17):8874–8882, 2019

Reference 21

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Observation 99fed156-c56b-4dbb-a010-c9d973e59d96 · outbound

This paper cites How quantum is radical pair magnetoreception?Faraday discussions, 221: 77–91, 2020.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment How quantum is radical pair magnetoreception?Faraday discussions, 221: 77–91, 2020

Reference 22

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Observation f4ae3d90-b51d-48b3-9d54-ea80a69eb0b4 · outbound

This paper cites Electron–electron dipolar inter- 25 action poses a challenge to the radical pair mechanism of magnetoreception.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Electron–electron dipolar inter- 25 action poses a challenge to the radical pair mechanism of magnetoreception

Reference 23

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Observation 85aebeea-d2ab-46bf-ab03-83fc427464e2 · outbound

This paper cites Quantum sim- ulation of the radical pair dynamics of the avian compass.The Journal of Physical Chemistry Letters, 14(3):832–837, 2023.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Quantum sim- ulation of the radical pair dynamics of the avian compass.The Journal of Physical Chemistry Letters, 14(3):832–837, 2023

Reference 24

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Observation 128140d1-a317-4a70-84c1-4712d50ff47a · outbound

This paper cites Magnetoreception in cryp- tochrome enabled by one-dimensional radical motion.AVS Quantum Sci- ence, 5(2), 2023.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Magnetoreception in cryp- tochrome enabled by one-dimensional radical motion.AVS Quantum Sci- ence, 5(2), 2023

Reference 25

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Observation e0ba2bc5-90b2-4d3c-b1ad-cb0cefb35d60 · outbound

This paper cites Direct interaction of avian cryptochrome 4 with a cone specific g-protein.Cells, 11(13):2043, 2022.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Direct interaction of avian cryptochrome 4 with a cone specific g-protein.Cells, 11(13):2043, 2022

Reference 26

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Observation 09961b47-3e5f-4ccd-b6a0-f4a6546886ac · outbound

This paper cites Magnetosensitivity of tightly bound radi- cal pairs in cryptochrome is enabled by the quantum zeno effect.Nature Communications, 15(1):10823, 2024.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Magnetosensitivity of tightly bound radi- cal pairs in cryptochrome is enabled by the quantum zeno effect.Nature Communications, 15(1):10823, 2024

Reference 27

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Observation bc3d9a5d-4f73-4e67-8cef-066a79097dc8 · outbound

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Quantum modeling of radical pair magnetic sensor based on electric dipole moment Unresolved cited work

Reference 28

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Observation 6926acec-89de-4567-b950-aa27c79e3c60 · outbound

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Quantum modeling of radical pair magnetic sensor based on electric dipole moment Unresolved cited work

Reference 29

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Observation 1ce84cde-07bc-45cc-b6f8-155742b6403e · outbound

This paper cites Cryp- 26 tochrome mediates light-dependent magnetosensitivity of drosophila’s cir- cadian clock.PLoS biology, 7(4):e1000086, 2009.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Cryp- 26 tochrome mediates light-dependent magnetosensitivity of drosophila’s cir- cadian clock.PLoS biology, 7(4):e1000086, 2009

Reference 30

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Quantum modeling of radical pair magnetic sensor based on electric dipole moment Unresolved cited work

Reference 31

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Observation d13130d6-0506-46a1-8605-85b04f2630d5 · outbound

This paper cites Role of exchange and dipolar interactions in the radical pair model of the avian magnetic compass.Biophysical journal, 94(5):1565–1574, 2008.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Role of exchange and dipolar interactions in the radical pair model of the avian magnetic compass.Biophysical journal, 94(5):1565–1574, 2008

Reference 32

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Observation d14bc7ad-bf1e-4bbe-9a96-c09febc223a3 · outbound

This paper cites Quantum-mechanical in- sights into the anisotropic response of the cryptochrome radical pair to a weak magnetic field.The Journal of Chemical Physics, 158(3), 2023.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Quantum-mechanical in- sights into the anisotropic response of the cryptochrome radical pair to a weak magnetic field.The Journal of Chemical Physics, 158(3), 2023

Reference 33

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Observation 6d3ea614-5f1b-43cb-9532-5f2fd7310b5a · outbound

This paper cites Isotope substitution effects on the magnetic compass properties of cryptochrome-based radical pairs: a computational study.The Journal of Physical Chemistry B, 127(4):838–845, 2023.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Isotope substitution effects on the magnetic compass properties of cryptochrome-based radical pairs: a computational study.The Journal of Physical Chemistry B, 127(4):838–845, 2023

Reference 34

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source=pdf_text observed=2026-08-04T10:23:44.787767Z digest=sha256:8e66b3ba07ae652a67fef6a817f72fd695859bfc23cdd806d09f56dc86927262

Observation 17c7e71b-41c4-44eb-a434-4a2a3ad9194c · outbound

This paper cites Radical-pair model of magnetoreception with spin–orbit coupling.New Journal of Physics, 15(8):083024, 2013.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Radical-pair model of magnetoreception with spin–orbit coupling.New Journal of Physics, 15(8):083024, 2013

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no resolver link, observed 2026-08-04T10:23:44.858616Z

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source=pdf_text observed=2026-08-04T10:23:44.858616Z digest=sha256:8911b404ef047b9b7edb8fb52e3973cd2361dde69043ff43a9e7d033a9062c4d

Observation c8c33166-8483-4ff5-baab-1d7f5f318bbf · outbound

This paper cites The radical-pair mechanism of mag- netoreception.Annual review of biophysics, 45(1):299–344, 2016.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment The radical-pair mechanism of mag- netoreception.Annual review of biophysics, 45(1):299–344, 2016

Reference 36

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no resolver link, observed 2026-08-04T10:23:44.939307Z

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source=pdf_text observed=2026-08-04T10:23:44.939307Z digest=sha256:f14cb124b7dfc995d08305d88328d9f4909aa826d5d9da865255bfff5ce6be3f

Observation a9c6bdb9-57c3-467e-96c3-82f54085c95e · outbound

This paper cites A new type of radical-pair-based model for magnetoreception.Biophysical journal, 102(5):961–968, 2012.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment A new type of radical-pair-based model for magnetoreception.Biophysical journal, 102(5):961–968, 2012

Reference 37

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no resolver link, observed 2026-08-04T10:23:45.031946Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-04T10:23:45.031946Z digest=sha256:c199c8fc3b75bc8ca8a664c4ac449ebbd65759e8f21a81d462bd42b80798485c

Observation be5a5674-6b40-44a7-9a3e-26c23429855d · outbound

This paper cites Physical constraints for the Stoneham model for light-dependent magnetoreception.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Physical constraints for the Stoneham model for light-dependent magnetoreception

Reference 38

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no resolver link, observed 2026-08-04T10:23:45.130384Z

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source=pdf_text observed=2026-08-04T10:23:45.130384Z digest=sha256:7f7fbd2aa98aa713ef76ecf5126da3853fe36c33a4c87d6d9bc46ec39d495bc6

Observation 33ecc52b-bde3-45eb-add2-d60361db8cf1 · outbound

This paper cites Nonspecific magnetic biological effects: A model assuming the spin-orbit coupling.The Journal of chemical physics, 151(20), 2019.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Nonspecific magnetic biological effects: A model assuming the spin-orbit coupling.The Journal of chemical physics, 151(20), 2019

Reference 39

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no resolver link, observed 2026-08-04T10:23:45.218669Z

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source=pdf_text observed=2026-08-04T10:23:45.218669Z digest=sha256:ddc5883d257cf9f7cbd19379fc12fda64c804ce22e7c0f0cd49e49275a8ab0eb

Observation 74cb7d91-a7ce-4763-a3ad-b78d76cc9b94 · outbound

This paper cites OUP Oxford, 2002.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment OUP Oxford, 2002

Reference 40

Resolution
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no resolver link, observed 2026-08-04T10:23:45.347286Z

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source=pdf_text observed=2026-08-04T10:23:45.347286Z digest=sha256:62df18e1427fd8a098cdfc0a089bcd737b19c1271698179559030a22e777c778

Observation eee3cdfc-0432-48c8-921a-cf17b4f772a7 · outbound

This paper cites Crown, 2016.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Crown, 2016

Reference 41

Resolution
unresolved
no resolver link, observed 2026-08-04T10:23:45.484815Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-04T10:23:45.484815Z digest=sha256:9b50d96c3dac2df4f87e837f1faddb727574081b407a4345920c87c4f28c321d

Observation 8d92ddcb-ad09-4465-817d-e9681cbc4993 · outbound

This paper cites Reaction kinetics and mechanism of magnetic field effects in cryptochrome.The Journal of Physical Chemistry B, 116(3):1089–1099, 2012.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Reaction kinetics and mechanism of magnetic field effects in cryptochrome.The Journal of Physical Chemistry B, 116(3):1089–1099, 2012

Reference 42

Resolution
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no resolver link, observed 2026-08-04T10:23:45.556126Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-04T10:23:45.556126Z digest=sha256:0c99277ce2627a7e81a47d8c9ca49922d22b8bfdd5a479826a80e6839954f042

Observation c3f96e9e-7d3f-44ca-a896-ef8dc3702671 · outbound

This paper cites Upper bound on the biological effects of 50/60 hz magnetic fields mediated by radical pairs.Elife, 8:e44179, 2019.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Upper bound on the biological effects of 50/60 hz magnetic fields mediated by radical pairs.Elife, 8:e44179, 2019

Reference 43

Resolution
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no resolver link, observed 2026-08-04T10:23:45.722842Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-04T10:23:45.722842Z digest=sha256:325464a0fb655c416ee14a5f2e702ae2e87180794ea8ce16857d3ffde3db9fe4

Observation c74bb5be-0612-4998-a34a-ceaf9c2195ec · outbound

This paper cites Clausius inequality versus quantum coherence.The European Physical Journal Plus, 134(6):282, 2019.

Quantum modeling of radical pair magnetic sensor based on electric dipole moment Clausius inequality versus quantum coherence.The European Physical Journal Plus, 134(6):282, 2019

Reference 44

Resolution
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no resolver link, observed 2026-08-04T10:23:45.830828Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-04T10:23:45.830828Z digest=sha256:4670031cadee8ab268d869e08ecf7a252b277e05189e55a94bd9ca2672f8cc02

Pith citing papers

No inbound Pith citation observations are available.