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Paper Citation Record · LEDGER

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide

As of 18 August 2026, this Paper Citation Record lists 50 of 50 outbound references and 0 inbound Pith citation observations for arXiv:2605.27607.

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

pith.paper-citation-record.v1
2605.27607 v1

Coverage vector

measured 50 of 50 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-06-29T15:22:57.028152Z

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-18T06:34:40.430872+00:00

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Outbound references

Observation 6dfca4f4-63f3-4e2f-a706-4fbc81c47cbf · outbound

This paper cites Two-photon coherent states of the radiation field.Physical Review A, 13(6):2226, 1976.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Two-photon coherent states of the radiation field.Physical Review A, 13(6):2226, 1976

Reference 1

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:a4521f93221c4e93cff229ae61b0c6fdaf57a2ab57f4620233d1b8a775b26b90

Observation 3f3a1d60-28dc-434b-ade8-8fffd3df3ea3 · outbound

This paper cites Squeezed states of light.Nature, 306(5939):141–146, 1983.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Squeezed states of light.Nature, 306(5939):141–146, 1983

Reference 2

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:c82fbd314df9ddbc36187a3855f461c9a66938768f9795b325199b54d75e659b

Observation 90c81b75-38a7-4002-b530-e36c9056dd70 · outbound

This paper cites Ganapathy, W.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Ganapathy, W

Reference 3

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:ed7a788787db5402ad085eabb32abf580eb1f5bf6125591f3084fa1a667c5357

Observation 99e2581e-ca7b-4f20-9806-9ef6475bdf93 · outbound

This paper cites Frequency-Dependent 12 Squeezed Vacuum Source for Broadband Quantum Noise Reduction in Advanced Gravitational-Wave Detectors.Physical Review Letters, 124(17):171101, April 2020.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Frequency-Dependent 12 Squeezed Vacuum Source for Broadband Quantum Noise Reduction in Advanced Gravitational-Wave Detectors.Physical Review Letters, 124(17):171101, April 2020

Reference 4

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:82c564eb67009d5955c0d7803f4abc4ac6ba2b051299c1289ce5cefa4dd8b491

Observation 3bcb4ee6-2083-4713-b07c-0e1a9f3933da · outbound

This paper cites Distributed quantum sensing.Quantum Science and Technology, 6(4):043001, 2021.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Distributed quantum sensing.Quantum Science and Technology, 6(4):043001, 2021

Reference 5

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:b0b9daefbbec6f554c187f7a616967e7df4746973485ff3c7e1cf4421ae03e8c

Observation e0636d2c-32ce-4145-b755-54b3ea24f968 · outbound

This paper cites Casacio, Lars S.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Casacio, Lars S

Reference 6

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:5452079423f5b80d0bd8417b557bbda02fcc355033388d52eb558ee22e259495

Observation 583173b4-194c-4e15-a86a-0ee0f4b7d5a6 · outbound

This paper cites Taylor, Jiri Janousek, Vincent Daria, Joachim Knittel, Boris Hage, Hans-A.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Taylor, Jiri Janousek, Vincent Daria, Joachim Knittel, Boris Hage, Hans-A

Reference 7

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:dcdb16658666d2a3f560a8f74284555901b75809dd34708da7677b76273f8061

Observation 30bc3bb3-c8a4-44ca-9429-47376b2ba36e · outbound

This paper cites Continuous-variable quantum computing in the quantum optical frequency comb.Journal of Physics B, 53:012001, 2020.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Continuous-variable quantum computing in the quantum optical frequency comb.Journal of Physics B, 53:012001, 2020

Reference 8

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:bb49ddbb8ce0ed512f95f53cb5b727e911a605067ea910090ca941b19f8a69a3

Observation a9f42efa-ff5b-4b30-b5fd-2a9641240728 · outbound

This paper cites Aghaee Rad, T.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Aghaee Rad, T

Reference 9

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:8892b592432e983e63547c0cbd1e277aacc38209d875f089f26af5f8adc1003d

Observation 70fa0ae8-5e03-4beb-a1b6-a07c960b733d · outbound

This paper cites Logical states for fault-tolerant quantum computation with propagating light.Science, 383(6680):289–293, January 2024.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Logical states for fault-tolerant quantum computation with propagating light.Science, 383(6680):289–293, January 2024

Reference 10

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:95057188ddb729daf22e877844c9acc48193b2cd5eaca5df5142cf7c7e33c42f

Observation 226bd9c8-acf0-4806-9def-6ec89e305105 · outbound

This paper cites Herman, Mathieu Walsh, Molly Kate Kreider, Noah Lordi, Eugene J.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Herman, Mathieu Walsh, Molly Kate Kreider, Noah Lordi, Eugene J

Reference 11

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:99fa37968802c09e8510acf38e760f9b58dcd14b2d5f87d6f88d088a2dba3d3b

Observation 1d493094-ba32-4f57-9f7a-7c947be48a31 · outbound

This paper cites Entangled dual-comb spectroscopy.Phys.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Entangled dual-comb spectroscopy.Phys

Reference 12

Resolution
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no resolver link, observed 2026-06-29T15:22:57.028152Z

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:a1afea72d55db0080d0235bbc9e34470166e1acc73a614ce465bdb33dbd7e363

Observation 24a74c36-ec11-4621-bf9b-fcad7bde062d · outbound

This paper cites Entanglement-enhanced optomechanical sensing.Nature Photonics, 17(6):470–477, 2023.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Entanglement-enhanced optomechanical sensing.Nature Photonics, 17(6):470–477, 2023

Reference 13

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:0ba60bb0f1d9c9f8cd91e614b13eb6e03497116747eed3bc55afd6ce5775e6f1

Observation d7f8afc4-1c43-458d-a11a-b2c4c32c7189 · outbound

This paper cites Un- cooled low-noise thin-film optomechanical resonator for thermal sensing on lithium niobate.arXiv preprint, 2026.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Un- cooled low-noise thin-film optomechanical resonator for thermal sensing on lithium niobate.arXiv preprint, 2026

Reference 14

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unresolved
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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:785c2a3eb439abd5509d4b69d71c436c176b4a8e5e73dc14c5b52032f133bac7

Observation 513f54b4-e186-4811-ba9e-bbec6e376e9a · outbound

This paper cites Vahlbruch, M.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Vahlbruch, M

Reference 15

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:d9ad84d645286590e5186a8f4d089eb9a877b89b42bfa0f828cf45688595d90a

Observation 68e2be19-2513-4dac-9425-3999a2cce7f8 · outbound

This paper cites Kanter, Prem Kumar, Rostislav V.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Kanter, Prem Kumar, Rostislav V

Reference 16

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unresolved
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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:f8da1d66833fed23383d0bd386f46bb6ababcba96b401250004a089e6e370c24

Observation 6d70f6c9-a7c5-48cc-b570-1d84f37cfb6a · outbound

This paper cites Mosley, and Christine Silberhorn.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Mosley, and Christine Silberhorn

Reference 17

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unresolved
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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:bc264d61c0d9867891478ce02574c7a02f5f63385f2218724bb4406fdeb583cf

Observation ec9d0fdf-5530-402d-9d06-732fdbaed485 · outbound

This paper cites Stefszky, R.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Stefszky, R

Reference 18

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:c635aed69d64835c82f4b38f7fe6d6dbd1a512c4afd8665be2d09fc7528450c3

Observation 2cb7c47e-b91e-44f2-88d6-e99c8c85f5e8 · outbound

This paper cites Mondain, T.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Mondain, T

Reference 19

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:bf1ace6252c220c333302a7228e73121b8d3c49eab22b6091725da8152a8e269

Observation 9d4a657d-ccc9-4fbe-a53b-f5adcc629d71 · outbound

This paper cites Continuous-wave 6-dB-squeezed light with 2.5-THz-bandwidth from single-mode PPLN waveguide.APL Photonics, 5:036104, 2020.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Continuous-wave 6-dB-squeezed light with 2.5-THz-bandwidth from single-mode PPLN waveguide.APL Photonics, 5:036104, 2020

Reference 20

Resolution
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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:767f632a0274a37d3733917c3ef2b1620ebafd9026a6a7ac1a51453934677353

Observation 13af0d19-3c87-435c-b1a2-d6f378f96729 · outbound

This paper cites Generation of 10-db squeezed light from a broadband waveguide opti- cal parametric amplifier with improved phase locking method.Optics Express, 34(5):7958–7966, 2026.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Generation of 10-db squeezed light from a broadband waveguide opti- cal parametric amplifier with improved phase locking method.Optics Express, 34(5):7958–7966, 2026

Reference 21

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:2e828b7abf59e340d9bfe8a609d4f69fd6f33004abb5a370f8b7ac88de26c01a

Observation 420b7b26-5de5-42c2-ae5c-004fccbd10b3 · outbound

This paper cites Grim, and Warwick.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Grim, and Warwick

Reference 22

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unresolved
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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:c213220cec46206368d0cda958f76a64d25acbf9010c347272779591089fe535

Observation 1636bb25-8b90-4753-b0fc-49affb5fb41f · outbound

This paper cites an unresolved cited work.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Unresolved cited work

Reference 23

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source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:90e90a73570dcbeae8885cdc11e6ace6e7549b4be0147ec7222f2abfe845123e

Observation d24b1c11-bfce-4b50-bc1f-16684c041db8 · outbound

This paper cites Domeneguetti, Jonas Schou Neergaard-Nielsen, Wolfram Pernice, Tobias Gehring, and Ulrik Lund Andersen.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Domeneguetti, Jonas Schou Neergaard-Nielsen, Wolfram Pernice, Tobias Gehring, and Ulrik Lund Andersen

Reference 24

Resolution
unresolved
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Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:b02cb56260c4830b6eb24bf66b30642b258454ea5e42a31ee0a1daa890998b26

Observation c69084f7-e840-46cb-8c3c-875f30aac60d · outbound

This paper cites Quantum squeez- ing in an all-resonant periodically poled lithium niobate microresonator.arXiv preprint, 2026.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Quantum squeez- ing in an all-resonant periodically poled lithium niobate microresonator.arXiv preprint, 2026

Reference 25

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unresolved
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Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:e1230b3d968b493720ce4316f804c5edfc295b46ac0df8c4a00d156b725f56f4

Observation 360df7ce-e323-4648-9ff7-8b18b1ef1e7d · outbound

This paper cites Gaeta, Paulo Nussenzveig, and Michal Lipson.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Gaeta, Paulo Nussenzveig, and Michal Lipson

Reference 26

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unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

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Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:9837a2f0f3b8404cb464580327e34ddbcb99ffc63408cf1415cfd99f1aafe6cc

Observation 36d15ead-67d4-44c2-b0cb-7adeb0ba4e49 · outbound

This paper cites Smith, and Avik Dutt.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Smith, and Avik Dutt

Reference 27

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:8be7c7e5cc8c97c4dd1fffadda4a76945884c343c92a4f2e5cc65fae426884c8

Observation a736df2b-a4b4-45d2-b19b-ab8543fb5003 · outbound

This paper cites Bensemhoun, S.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Bensemhoun, S

Reference 28

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:3cc200aef463b78ac68893effa408d018065e84229c5b759831dd3a8575c731e

Observation 9358dbea-5f2c-4db3-ab3f-5bfdfec2e7d9 · outbound

This paper cites Continuous-variable multipartite entanglement in an integrated microcomb.Nature, 639:329–336, 2025.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Continuous-variable multipartite entanglement in an integrated microcomb.Nature, 639:329–336, 2025

Reference 29

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:80293dd22b4adcf32aa14e4712254639aae9113be9805a7c68ee0ddee298d344

Observation 529f9bea-4ec5-4d93-bb55-8b329e2ac58e · outbound

This paper cites A squeezed quantum microcomb on a chip.Nature Communications, 12:4781, 2021.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide A squeezed quantum microcomb on a chip.Nature Communications, 12:4781, 2021

Reference 30

Resolution
unresolved
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Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:33da82da3cf8f95e8fe452f0cfdf9f72e2ed5e1a953c985c292afed94620be30

Observation ec0b6607-0d62-4e68-a6a9-69c6d844a07c · outbound

This paper cites Zhang, M.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Zhang, M

Reference 31

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:2af0702eb09fa82d00bbd605be5a8708eccc305b765ead00e47296e93e2ec85f

Observation f446b226-6dfc-4e19-b78e-21716c925e88 · outbound

This paper cites Cullen, Jonathan Cripe, Garrett D.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Cullen, Jonathan Cripe, Garrett D

Reference 32

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:7b21b8575ade1f113d2a65de8d7be664590faaedd47dc79e097752795c3254e4

Observation c541ac04-353a-4e8a-9674-4daa11529270 · outbound

This paper cites Squeezed states of light and their applications in laser interfer- ometers.Physics Reports, 684:1–51, July 2017.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Squeezed states of light and their applications in laser interfer- ometers.Physics Reports, 684:1–51, July 2017

Reference 33

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:6bc2d352ae221782161d16ab8c450e679121456730a4960d9ebaead250b510ca

Observation 5d2d0fbe-ea1d-40cc-8ac9-d0d8f409af9b · outbound

This paper cites Fejer, and Marko Lonˇ car.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Fejer, and Marko Lonˇ car

Reference 34

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:7cef18c28becca9ac84f71cc52825df7bb48673067d16b122f42cb06b7f353e6

Observation 10d4ad1b-186e-44aa-a44e-1542d18dc572 · outbound

This paper cites Surya, Chang-Ling Zou, and Hong X.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Surya, Chang-Ling Zou, and Hong X

Reference 35

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:6b2fc47d918f397395817e9fbbff87adce3cff046b6aba7f9b6d771448ff2d05

Observation 7d7bf5af-6ce6-491d-8a81-cf0e9303f396 · outbound

This paper cites Low threshold integrated optical parametric oscillator with a compact Bragg resonator.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Low threshold integrated optical parametric oscillator with a compact Bragg resonator

Reference 36

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:25102f5eb99a348a4be35f873a71cf6ff860da47048f403d2b81970e7ed95cd8

Observation 0551febe-3fac-4a01-8e5a-50948731b82e · outbound

This paper cites Fun- damental phase noise in thin film lithium niobate resonators.arXiv preprint, 2025.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Fun- damental phase noise in thin film lithium niobate resonators.arXiv preprint, 2025

Reference 37

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:4b0deeb6eecfd47e621b9c01b10d6b142d42958ced311ad06d4dbc584d3e59ea

Observation 58f11ebc-679f-41f4-acc6-bb0521e2e0dd · outbound

This paper cites Photorefractive and pyroelectric photonic memory and long-term stability in thin-film lithium niobate microresonators.npj Nanophotonics, 2:1, 2025.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Photorefractive and pyroelectric photonic memory and long-term stability in thin-film lithium niobate microresonators.npj Nanophotonics, 2:1, 2025

Reference 38

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:000b4190f09335dbafc637cc037a006b4a6202060d9340d4db8036bcdd525768

Observation 756afd33-06dd-4184-bc08-aba2d6111862 · outbound

This paper cites Gray, Arkadev Roy, and Alireza Marandi.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Gray, Arkadev Roy, and Alireza Marandi

Reference 39

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:ee321c510758c65335ffe3ad048f2718da13a3be027362bcad121a3b1785cd4c

Observation 98978d95-bd85-4b54-bbaa-6f282bf922ec · outbound

This paper cites Ultra-broadband quadrature squeezing with thin-film lithium niobate nanophotonics.Optics Letters, 47(6):1506–1509, March 2022.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Ultra-broadband quadrature squeezing with thin-film lithium niobate nanophotonics.Optics Letters, 47(6):1506–1509, March 2022

Reference 40

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:f9c7920c2a17feda27688ec667f191b59ba84c54aed79403e16f6d93a1a0a10e

Observation bb08303c-1800-417a-bb2a-9792ba8a491f · outbound

This paper cites Stokowski, Timothy P.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Stokowski, Timothy P

Reference 41

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:f5de7edc35ae3ec3fa27279fb0013d4978df4fa2c4c9cc0fd245567a4a3bd71e

Observation d2238634-a85a-419f-85b3-4bbf740e46e6 · outbound

This paper cites Squeezed light generation in periodically poled thin-film lithium niobate waveguides.Nanopho- tonics, 14(26):4721–4727, 2025.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Squeezed light generation in periodically poled thin-film lithium niobate waveguides.Nanopho- tonics, 14(26):4721–4727, 2025

Reference 42

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:9083b749a1d1d6905ad9693530ace84194b05c08439c81966998508f271fdbfa

Observation 8043c726-7e2c-4a6f-a4b5-58ca22be0726 · outbound

This paper cites Adapted poling to break the nonlinear efficiency limit in nanophotonic lithium niobate waveguides.Nature Nanotechnology, 19:44–50, 2024.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Adapted poling to break the nonlinear efficiency limit in nanophotonic lithium niobate waveguides.Nature Nanotechnology, 19:44–50, 2024

Reference 43

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:808ccd00ae9e0bbc5c3f7607da7ce18b82bfc5dd9b327113f3a899050ec3fc9b

Observation 9cdc03fd-dce4-45fd-9ad4-630a18daa346 · outbound

This paper cites an unresolved cited work.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Unresolved cited work

Reference 44

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:b3910bb1aab3918ccdbd829eabfb27de9d15e2de6885b075256358579dc77ce3

Observation b11bcfff-1425-48cf-bd2b-5d7415010993 · outbound

This paper cites Breaking on/off-coupling loss degeneracies via bidirectional nonlinear optics.arXiv preprint, 2026.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Breaking on/off-coupling loss degeneracies via bidirectional nonlinear optics.arXiv preprint, 2026

Reference 45

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:9ffcc9626926da622319c237135a8464b05727314bd29149c4719588908e44bd

Observation 7bc6aecd-2361-4c06-b400-91cdd1d2dfd8 · outbound

This paper cites Twenty-nine million intrinsic q-factor monolithic microresonators on thin-film lithium niobate.Photonics Research, 12:A63 – A68, 2024.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Twenty-nine million intrinsic q-factor monolithic microresonators on thin-film lithium niobate.Photonics Research, 12:A63 – A68, 2024

Reference 46

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:2a8d969a26e96f219338f52c0fecdf469506216654d6a5a6671381d91a3acc9b

Observation be2a5191-d447-4be1-acf4-93f330a0516d · outbound

This paper cites an unresolved cited work.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Unresolved cited work

Reference 47

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:d288308fbb9a579e17ee55d2816b4454fb0148928b2536c5839e172847d6d179

Observation ed0e8be1-f901-46f4-b44c-0d1fd9d29b72 · outbound

This paper cites Doshi, Gavin N.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Doshi, Gavin N

Reference 48

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:3d6ac95740b11f89e8743c73eb5021afc6d63513eec7b692c499f0116452d179

Observation 40096452-8e44-48fa-bc9d-f094ba270834 · outbound

This paper cites Low-loss fiber-to-chip interface for lithium niobate photonic integrated circuits.Optics Letters, 44:2314–2317, 2019.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Low-loss fiber-to-chip interface for lithium niobate photonic integrated circuits.Optics Letters, 44:2314–2317, 2019

Reference 49

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:8b7ad248668612712c553fa27bc4ae6735cc72c0b190be4ba545d938a3acabac

Observation dccc9658-98b6-4c40-ac89-8ac3bfa41b1c · outbound

This paper cites Hypermultiplexed integrated photonics–based optical tensor processor.Science Advances, 11:adu0228, 2025.

18-dB on-chip vacuum squeezing in an adaptively poled lithium niobate waveguide Hypermultiplexed integrated photonics–based optical tensor processor.Science Advances, 11:adu0228, 2025

Reference 50

Resolution
unresolved
no resolver link, observed 2026-06-29T15:22:57.028152Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-06-29T15:22:57.028152Z digest=sha256:23935f76a0e5466a26381abc8461191ea74370e8768642695d667dc1d982e2a0

Pith citing papers

No inbound Pith citation observations are available.