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Paper Citation Record · LEDGER

Hydrogenated carbon structures as directional sub-GeV dark matter detectors

As of 21 August 2026, this Paper Citation Record lists 74 of 74 outbound references and 0 inbound Pith citation observations for arXiv:2602.02694.

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pith.paper-citation-record.v1
2602.02694 v2

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measured 74 of 74 reference resolution

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Outbound references

Observation 7f0c5be9-a77b-4a50-803b-0104fc974af3 · outbound

This paper cites This is done by an accept-reject method, from a distribu- tion given by a truncated Maxwellian following the standard halo model, as described in the main text.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors This is done by an accept-reject method, from a distribu- tion given by a truncated Maxwellian following the standard halo model, as described in the main text

Reference 1

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Observation 1d574352-bccd-4e21-9bfe-23616214dda7 · outbound

This paper cites an unresolved cited work.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Unresolved cited work

Reference 2

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Observation 31fef167-de71-4e87-9c6f-23e83fa878f9 · outbound

This paper cites In the first instance it is assumed that it undergoes (yet unknown) energy losses and eventually gets captured.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors In the first instance it is assumed that it undergoes (yet unknown) energy losses and eventually gets captured

Reference 3

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Observation 626efa82-805d-4186-9512-b01e256133c8 · outbound

This paper cites • If the proton is ejected outside the nanotube, instead, it will scatter off the walls of the other nanotubes in the forest.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors • If the proton is ejected outside the nanotube, instead, it will scatter off the walls of the other nanotubes in the forest

Reference 4

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Observation 8621e43c-ed52-4987-9189-d16b043e592e · outbound

This paper cites Dark Matter Search Results from the PICO-60 C$_3$F$_8$ Bubble Chamber.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Dark Matter Search Results from the PICO-60 C$_3$F$_8$ Bubble Chamber

Reference 5

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Observation ac2311f5-038d-4887-8066-9eaebc006a32 · outbound

This paper cites Light Dark Matter Search with a High-Resolution Athermal Phonon Detector Operated Above Ground.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Light Dark Matter Search with a High-Resolution Athermal Phonon Detector Operated Above Ground

Reference 6

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Observation 0079530e-064b-4d99-a378-c479ec4b0ff8 · outbound

This paper cites Dark Matter Search Results from the PandaX-4T Commissioning Run.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Dark Matter Search Results from the PandaX-4T Commissioning Run

Reference 7

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Observation fade1ecc-c793-4255-af32-c7187e0df4a2 · outbound

This paper cites Search for low-mass dark matter WIMPs with 12 ton-day exposure of DarkSide- 50,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Search for low-mass dark matter WIMPs with 12 ton-day exposure of DarkSide- 50,

Reference 8

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Observation e18be63a-d685-411b-886e-1f576da735e9 · outbound

This paper cites SENSEI: First Direct-Detection Results on sub-GeV Dark Matter from SENSEI at SNOLAB.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors SENSEI: First Direct-Detection Results on sub-GeV Dark Matter from SENSEI at SNOLAB

Reference 9

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Observation af13b8e5-e8fc-4f79-9979-57219b81a133 · outbound

This paper cites Dark Matter Search Results from 4.2 Tonne-Years of Exposure of the LUX-ZEPLIN (LZ) Experiment.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Dark Matter Search Results from 4.2 Tonne-Years of Exposure of the LUX-ZEPLIN (LZ) Experiment

Reference 10

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Observation f1e8534b-8900-45eb-979e-96093765ad3d · outbound

This paper cites First observation of single photons in a CRESST detector and new dark matter exclusion limits.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors First observation of single photons in a CRESST detector and new dark matter exclusion limits

Reference 11

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Observation 9e526013-0007-4325-a287-dd487f99b32e · outbound

This paper cites WIMP Dark Matter Search using a 3.1 tonne × year Exposure of the XENONnT Experiment,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors WIMP Dark Matter Search using a 3.1 tonne × year Exposure of the XENONnT Experiment,

Reference 12

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Observation 5710eb35-98bb-48d2-ae4f-7ca63fd60b71 · outbound

This paper cites Scalar dark matter candi- 8 dates,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Scalar dark matter candi- 8 dates,

Reference 13

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Observation d1a4db8b-aa92-4f72-9acc-5337ba305791 · outbound

This paper cites A Natural Supersymmetric Model with MeV Dark Matter.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors A Natural Supersymmetric Model with MeV Dark Matter

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Observation ce66e567-e100-4be7-bab7-27ee7321260f · outbound

This paper cites The WIMPless Miracle: Dark Matter Particles without Weak-scale Masses or Weak Interactions.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors The WIMPless Miracle: Dark Matter Particles without Weak-scale Masses or Weak Interactions

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Observation 20efb5f8-7e86-4ca8-ac6a-1dc3f0847d69 · outbound

This paper cites Asymmetric Dark Matter from Leptogenesis.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Asymmetric Dark Matter from Leptogenesis

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Observation 53d90ba0-1c50-4ef6-94df-a356a725876a · outbound

This paper cites The SIMP Miracle.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors The SIMP Miracle

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Observation c8c1fcf3-f7ba-4521-8159-2e129a0f3bc0 · outbound

This paper cites Forbidden Dark Matter.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Forbidden Dark Matter

Reference 18

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Observation 511a0177-ca47-4c54-a5ab-7264e34a9fc6 · outbound

This paper cites Elastically Decoupling Dark Matter.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Elastically Decoupling Dark Matter

Reference 19

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Observation 6114d13b-007b-4da2-90e6-24d2ef2f8e98 · outbound

This paper cites Exponentially Light Dark Matter from Coannihilation.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Exponentially Light Dark Matter from Coannihilation

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Observation 28144114-3256-4fc1-9466-224107317768 · outbound

This paper cites Direct Detection of Sub-GeV Dark Matter.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Direct Detection of Sub-GeV Dark Matter

Reference 21

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Observation 0384e44c-7555-4cc5-b50e-83ab38d752de · outbound

This paper cites Probing sub-GeV Dark Matter with conventional detectors.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Probing sub-GeV Dark Matter with conventional detectors

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Observation 04ee8bc3-9b27-4864-ace3-932b292ae977 · outbound

This paper cites A Strategy for Low-Mass Dark Matter Searches with Cryogenic Detectors in the SuperCDMS SNOLAB Facility.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors A Strategy for Low-Mass Dark Matter Searches with Cryogenic Detectors in the SuperCDMS SNOLAB Facility

Reference 23

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This paper cites BULLKID: BULky and Low- Threshold Kinetic Inductance Detectors,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors BULLKID: BULky and Low- Threshold Kinetic Inductance Detectors,

Reference 24

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Observation d1f4681a-af6d-45f1-a7ba-ee3de34974fd · outbound

This paper cites DELight: a Direct search Experiment for Light dark matter with superfluid helium.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors DELight: a Direct search Experiment for Light dark matter with superfluid helium

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Observation 5e72d1da-d7e5-4330-ab39-84954260ee1f · outbound

This paper cites Dark Matter-Electron Detectors for Dark Matter-Nucleon Interactions.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Dark Matter-Electron Detectors for Dark Matter-Nucleon Interactions

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Observation 3996cf74-c867-41dd-9325-19d68ae2a017 · outbound

This paper cites The CRESST experiment: towards the next-generation of sub-GeV direct dark matter detection.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors The CRESST experiment: towards the next-generation of sub-GeV direct dark matter detection

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This paper cites First Limits on Light Dark Matter Interactions in a Low Threshold Two Channel Athermal Phonon Detector from the TESSERACT Collaboration.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors First Limits on Light Dark Matter Interactions in a Low Threshold Two Channel Athermal Phonon Detector from the TESSERACT Collaboration

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors The SWEET project: probing sugar crystals for direct dark matter searches

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors Search for Light Dark Matter Interactions Enhanced by the Migdal effect or Bremsstrahlung in XENON1T

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors Search for Dark- Matter–Nucleon Interactions via Migdal Effect with DarkSide-50,

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors Search for dark-matter–nucleon interactions with a dark mediator in pandax-4t,

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This paper cites Heisenberg's uncertainty principle in the PTOLEMY project: a theory update.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Heisenberg's uncertainty principle in the PTOLEMY project: a theory update

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors Multi- methodological analysis of hydrogen desorption from graphene,

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors The $\beta$-decay spectrum of Tritiated graphene: combining nuclear quantum mechanics with Density Functional Theory

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Observation 8c7adff2-38fb-47e4-8aae-107c99926a4e · outbound

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors Sub-GeV Dark Matter Detection with Electron Recoils in Carbon Nanotubes

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Hydrogenated carbon structures as directional sub-GeV dark matter detectors Directional Detection of Dark Matter with Two-Dimensional Targets

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Observation 5beac629-98a7-4f4c-8a0c-e2094293b441 · outbound

This paper cites The dark-PMT: a novel directional light Dark Matter detector based on vertically-aligned carbon nanotubes,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors The dark-PMT: a novel directional light Dark Matter detector based on vertically-aligned carbon nanotubes,

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source=pdf_text observed=2026-08-03T05:23:38.376571Z digest=sha256:2b5e89d3943f60c69c9c385b5f9d9808eca0c30a79e08dd58b8e8410d3de851d

Observation ddcdbe91-9016-47d5-ac8e-1204f967957c · outbound

This paper cites Direct searches for general dark matter-electron interactions with graphene detectors: Part II. Sensitivity studies.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Direct searches for general dark matter-electron interactions with graphene detectors: Part II. Sensitivity studies

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source=pdf_text observed=2026-08-03T05:23:38.532000Z digest=sha256:109e09b15fe4df86d047ab3a70ffe9463f5e7c36ef4094793bf3fdf6cac036ca

Observation 6af58cf7-68f0-423c-a2d4-f699e113910b · outbound

This paper cites Direct searches for general dark matter-electron interactions with graphene detectors: Part I. Electronic structure calculations.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Direct searches for general dark matter-electron interactions with graphene detectors: Part I. Electronic structure calculations

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source=pdf_text observed=2026-08-03T05:23:38.626864Z digest=sha256:e8eeaf9634d14dac13c54ed73dbf0d8b99b582dcd5874466053c3c428c236656

Observation 3359d2ba-8758-411f-b4c0-ca8c67f291f8 · outbound

This paper cites Neutrino physics with the PTOLEMY project: active neutrino properties and the light sterile case.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Neutrino physics with the PTOLEMY project: active neutrino properties and the light sterile case

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source=pdf_text observed=2026-08-03T05:23:38.709563Z digest=sha256:336624b58af2c0a53d27e94aac080a105ac37d630a284da4921320c5a7abba22

Observation 134f4732-a488-4842-8920-1e4605fc6154 · outbound

This paper cites Deuterium ad- sorption on free-standing graphene,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Deuterium ad- sorption on free-standing graphene,

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source=pdf_text observed=2026-08-03T05:23:38.840501Z digest=sha256:734aaf0e3c0e91e27628d35b15a707ce9505d95c50fbbdbf8ae8ebc157bbfc0a

Observation 41007af2-4c6b-4386-b1bb-7597c16e767c · outbound

This paper cites Gap opening in double-sided highly hydrogenated free-standing graphene,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Gap opening in double-sided highly hydrogenated free-standing graphene,

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source=pdf_text observed=2026-08-03T05:23:38.985854Z digest=sha256:b2bb024bdeda9bae85d94cd3d411d176f566ee1c953ca67447305184ff0cf5b1

Observation 95e0f2c0-c834-4e1e-9446-c5a75ebc19b7 · outbound

This paper cites Spectromicroscopy study of in- 9 duced defects in ion-bombarded highly aligned carbon nanotubes,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Spectromicroscopy study of in- 9 duced defects in ion-bombarded highly aligned carbon nanotubes,

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source=pdf_text observed=2026-08-03T05:23:39.096115Z digest=sha256:8084d71b727b36b960bd3f8bd7a69878037eafec897b9599618ab685b49e905a

Observation af3c1d01-0904-40c4-aaa7-83eda07c34ac · outbound

This paper cites Highly hydro- genated monolayer graphene with wide band gap opening,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Highly hydro- genated monolayer graphene with wide band gap opening,

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source=pdf_text observed=2026-08-03T05:23:39.262617Z digest=sha256:95a44fc843368c06ffc430f4dc7b044c08f4fb513a70aaa8aa561f9111495c8d

Observation 1ed54379-098c-46a9-a160-4bfce54c5072 · outbound

This paper cites Stability of Highly Hydrogenated Monolayer Graphene in Ultra-High Vacuum and in Air,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Stability of Highly Hydrogenated Monolayer Graphene in Ultra-High Vacuum and in Air,

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source=pdf_text observed=2026-08-03T05:23:39.438651Z digest=sha256:bdf45747bbf141d66f5fdf9710b9fc04f40dc8cec1127ed08b867112aedd04b6

Observation a289352e-0466-4052-811d-f3c4001285a1 · outbound

This paper cites Detection of low-energy protons using a silicon drift detector,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Detection of low-energy protons using a silicon drift detector,

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source=pdf_text observed=2026-08-03T05:23:39.478890Z digest=sha256:127566585704bab877fe7e6b6d8b52b164ff48a1952906cc22455f8fc95469d3

Observation 3c3412b5-767d-4571-ab5c-cdb920839283 · outbound

This paper cites Self-consistent equa- tions including exchange and correlation effects,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Self-consistent equa- tions including exchange and correlation effects,

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source=pdf_text observed=2026-08-03T05:23:39.539340Z digest=sha256:13b10265063addfa61013b72cbc5494c9754a140ec80e44697fa55b79355ae0c

Observation ea44dd7a-7e29-4e66-95fe-e504c1b4dade · outbound

This paper cites an unresolved cited work.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Unresolved cited work

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no resolver link, observed 2026-08-03T05:23:39.598877Z

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source=pdf_text observed=2026-08-03T05:23:39.598877Z digest=sha256:1d44d980f65dc7a28567459ad6ca575d054da39f7c3890e966384bd37a9ebc40

Observation 1898594b-c82c-47c0-9bfd-e09dfeedbbc9 · outbound

This paper cites Chemical vapor de- position of carbon nanotubes: a review on growth mecha- nism and mass production,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Chemical vapor de- position of carbon nanotubes: a review on growth mecha- nism and mass production,

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no resolver link, observed 2026-08-03T05:23:39.738347Z

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source=pdf_text observed=2026-08-03T05:23:39.738347Z digest=sha256:5479cbce60c2844af35712a9b096baa2959fc00828dc7c71f2c7e5c0f1b4db08

Observation 0918340a-fdb7-4b76-a322-0e98d35fedff · outbound

This paper cites Chemical vapor deposition growth of single-walled carbon nanotubes with controlled structures for nanodevice applications,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Chemical vapor deposition growth of single-walled carbon nanotubes with controlled structures for nanodevice applications,

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source=pdf_text observed=2026-08-03T05:23:39.879840Z digest=sha256:5892c9fa8798a74e9dbd6b50412f283a5698cd5c36e786f80e6d89506b4cb694

Observation d89d61a9-ca8f-44c6-9253-3311b50c70f7 · outbound

This paper cites The RAVE survey: the Galactic escape speed and the mass of the Milky Way.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors The RAVE survey: the Galactic escape speed and the mass of the Milky Way

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source=pdf_text observed=2026-08-03T05:23:40.042613Z digest=sha256:0045470fda8db768687bdb5184657b94889a119b953d9e1562f2ac0f338b3da5

Observation efb77dee-3986-48f0-8df4-50f93f5c2c0d · outbound

This paper cites The escape speed curve of the Galaxy obtained from Gaia DR2 implies a heavy Milky Way.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors The escape speed curve of the Galaxy obtained from Gaia DR2 implies a heavy Milky Way

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no resolver link, observed 2026-08-03T05:23:40.164951Z

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source=pdf_text observed=2026-08-03T05:23:40.164951Z digest=sha256:32c8314f830e1beb151ff2cd975aec8781efb42a7cf6d1dcbe03dcf42ffa5e17

Observation 55a71a15-9dc9-42d0-9ad9-900f6fad2f85 · outbound

This paper cites The dark matter profile of the milky way inferred from its circular velocity curve,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors The dark matter profile of the milky way inferred from its circular velocity curve,

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no resolver link, observed 2026-08-03T05:23:40.305634Z

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source=pdf_text observed=2026-08-03T05:23:40.305634Z digest=sha256:3a3d77b48ad6f4cae0357c7fd66a8eb846116839d01d4242e51b82263d13492f

Observation 0457978b-0beb-4e86-8a9d-ef1937942ccd · outbound

This paper cites Directional Dark Matter Searches with Carbon Nanotubes.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Directional Dark Matter Searches with Carbon Nanotubes

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Resolution
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no resolver link, observed 2026-08-03T05:23:40.429202Z

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source=pdf_text observed=2026-08-03T05:23:40.429202Z digest=sha256:7fdb4fba1af4d4e376dbc31136c320ccf99448497e40cf212f5261a7d01b76e4

Observation bf45d055-adc0-4cfc-b4e9-e4aa43884ba1 · outbound

This paper cites WIMP detection and slow ion dynamics in carbon nanotube arrays.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors WIMP detection and slow ion dynamics in carbon nanotube arrays

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source=pdf_text observed=2026-08-03T05:23:40.593684Z digest=sha256:fec7c2d0f55f57de6b5ced53609df3b775b68bf0f44255d324cbaaca398f8953

Observation 6f08ca7e-8eec-4224-a7d6-45ff7afb84f2 · outbound

This paper cites Proton transport through one-atom-thick crystals,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Proton transport through one-atom-thick crystals,

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Resolution
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no resolver link, observed 2026-08-03T05:23:40.756531Z

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source=pdf_text observed=2026-08-03T05:23:40.756531Z digest=sha256:e34175877a09642e6566bb8a65e54565921e4f4c72b0b5df74ff05633765a1c7

Observation af261920-96d7-43fd-bb7b-7342f1fbd36c · outbound

This paper cites Giant photo- effect in proton transport through graphene membranes,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Giant photo- effect in proton transport through graphene membranes,

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Resolution
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no resolver link, observed 2026-08-03T05:23:40.905463Z

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source=pdf_text observed=2026-08-03T05:23:40.905463Z digest=sha256:47d99a60a80e117733104757c342cf8c9b14b6422b47353a23532e89aa1b2c75

Observation 37b51297-8ff8-4613-8fe7-2c11b2cd8646 · outbound

This paper cites Proton and li-ion permeation through graphene with eight-atom-ring defects,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Proton and li-ion permeation through graphene with eight-atom-ring defects,

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source=pdf_text observed=2026-08-03T05:23:40.989952Z digest=sha256:dca3c4af197efc989d0a50a03a0acf2bc4f049eb81397d3e63400e4a7ce6753e

Observation 1dc267f6-dd4a-45b7-89d6-5a5b8fc4cc1a · outbound

This paper cites Biomimetic n-doped graphene membrane for proton exchange mem- branes,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Biomimetic n-doped graphene membrane for proton exchange mem- branes,

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source=pdf_text observed=2026-08-03T05:23:41.072358Z digest=sha256:09818c866bef260c1af62ef8dbc89fa345e0bb4b2ce20a3d4d1fe24aa20ffb2c

Observation 13c383fe-3bde-4501-8ace-4f4b46c65b99 · outbound

This paper cites Proton transport through nanoscale corrugations in two-dimensional crys- tals,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Proton transport through nanoscale corrugations in two-dimensional crys- tals,

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source=pdf_text observed=2026-08-03T05:23:41.145425Z digest=sha256:b205d57a3d5a6961674d05aaef097522a39d1744c2cae69bfdb445ab5c7ed8d0

Observation 195812d8-a982-41c4-a2a0-53d80d2569f2 · outbound

This paper cites Control of proton transport and hydrogenation in double- gated graphene,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Control of proton transport and hydrogenation in double- gated graphene,

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source=pdf_text observed=2026-08-03T05:23:41.197536Z digest=sha256:7fcec832341f7503e4be8fc04d331da47136d6b76799758afe3f1c4a2eb27f86

Observation 63761b46-294e-4299-ba18-99489041752d · outbound

This paper cites Auger neutralization of slow protons at solid surfaces,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Auger neutralization of slow protons at solid surfaces,

Reference 64

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source=pdf_text observed=2026-08-03T05:23:41.272507Z digest=sha256:c977930e6e2876fc593aa68603ac8e72bcdc993b3913ad9a5b9ee78a15ca7879

Observation 65441088-e53e-4f9a-89e0-4c383d3ed803 · outbound

This paper cites Neutralization of fast protons in grazing collisions with a clean al(111) surface,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Neutralization of fast protons in grazing collisions with a clean al(111) surface,

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source=pdf_text observed=2026-08-03T05:23:41.403873Z digest=sha256:8452042abc64e3ca117d9e1b60edfa853aaf41a270f8d9f6be03d8ab96a63e3d

Observation 0dc50d7f-86ac-4f12-99aa-2b9cb9478ff7 · outbound

This paper cites Velocity dependence of outgoing neutral fractions for h(1 s) and h + beams im- pinging on al(111) at grazing incidence,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Velocity dependence of outgoing neutral fractions for h(1 s) and h + beams im- pinging on al(111) at grazing incidence,

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no resolver link, observed 2026-08-03T05:23:41.568488Z

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source=pdf_text observed=2026-08-03T05:23:41.568488Z digest=sha256:0c42fbc8ffdfa0ad5d10eb983ecc1934536e9bb1f775f2d9e092fc45507dba10

Observation bd809231-e4df-40c9-a38a-4fd01894f370 · outbound

This paper cites Interplay of resonant and auger processes in proton neutralization after grazing surface scattering,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Interplay of resonant and auger processes in proton neutralization after grazing surface scattering,

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source=pdf_text observed=2026-08-03T05:23:41.707347Z digest=sha256:c3ee89fdb4bf0b423f64f33f1642d601cbdafeb6e817eee42b32d9a073466e88

Observation 1a00d0b8-d63c-4f04-b540-e16df5a1457d · outbound

This paper cites Quantitative correla- tion between carbon nanotube tip morphology and field emission properties at cryogenic temperature,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Quantitative correla- tion between carbon nanotube tip morphology and field emission properties at cryogenic temperature,

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no resolver link, observed 2026-08-03T05:23:41.836897Z

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source=pdf_text observed=2026-08-03T05:23:41.836897Z digest=sha256:5d65bf46991c1dfd43aeee2284155496527803ff8d721f3ecb8024bb357f8d97

Observation 9f3ff776-6ddf-4b23-a5ae-5c6c3cb8afa7 · outbound

This paper cites Phonons and related crystal properties from density-functional perturbation theory,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Phonons and related crystal properties from density-functional perturbation theory,

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source=pdf_text observed=2026-08-03T05:23:41.913077Z digest=sha256:bb9dfa1c522b9c7ece91304db72364425408d77fc6fa68dadeb518369222152d

Observation edc4a3e7-d5ac-48cd-98e7-959cf1f5f1d8 · outbound

This paper cites Migdal,Qualitative Methods in Quantum The- ory, Frontiers in Physics, Vol.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Migdal,Qualitative Methods in Quantum The- ory, Frontiers in Physics, Vol

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source=pdf_text observed=2026-08-03T05:23:42.000451Z digest=sha256:b52d07c2a479b44d25145ba93aa7bc025157cea72ed07744f00cb2e4a0b507a4

Observation ac44d6a8-e686-4b0d-835c-8a864f1ca649 · outbound

This paper cites Jdftx: Software for joint density- functional theory,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Jdftx: Software for joint density- functional theory,

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source=pdf_text observed=2026-08-03T05:23:42.079066Z digest=sha256:aedfd41a7a08743d478c4dad8ec47c855d75f204678f383c55fc6519a394158c

Observation 56bf0813-2d1a-4d9b-9a0d-6f83b8a0f8d9 · outbound

This paper cites Generalized gradient approximation made simple,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Generalized gradient approximation made simple,

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source=pdf_text observed=2026-08-03T05:23:42.176922Z digest=sha256:a4d3505b656b7932fbca01848a2545c38861c88843b0a2c58ec2afdc02f76207

Observation a04a63aa-467f-4838-abd0-e0ca2daf43f7 · outbound

This paper cites Optimization algo- rithm for the generation of oncv pseudopotentials,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Optimization algo- rithm for the generation of oncv pseudopotentials,

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source=pdf_text observed=2026-08-03T05:23:42.283913Z digest=sha256:3bb3f392918e0a0aacb8679b3535f92f47a7e42e47ba653ceeab942c81ab11cb

Observation 7d41ac69-39f4-4dd4-bb43-a476b0ae5397 · outbound

This paper cites Regular- 10 ization of the coulomb singularity in exact exchange by wigner-seitz truncated interactions: Towards chemical accuracy in nontrivial systems,.

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Regular- 10 ization of the coulomb singularity in exact exchange by wigner-seitz truncated interactions: Towards chemical accuracy in nontrivial systems,

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source=pdf_text observed=2026-08-03T05:23:42.397047Z digest=sha256:c02dad3f38433cd4d10a1ab7964a5a2b6e529a3f4aa65c63268a9cc4bb2146f3

Observation 8b304bbe-49e9-4d43-b111-003e2fd8fc74 · outbound

This paper cites Martin,Electronic Structure: Basic The- ory and Practical Methods(Cambridge University Press, 2004).

Hydrogenated carbon structures as directional sub-GeV dark matter detectors Martin,Electronic Structure: Basic The- ory and Practical Methods(Cambridge University Press, 2004)

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