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Paper Citation Record · LEDGER

Holographic reconstruction of black hole spacetime: machine learning and entanglement entropy

As of 13 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 6 inbound Pith citation observations for arXiv:2406.07395.

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

pith.paper-citation-record.v1
2406.07395 v2

Coverage vector

measured 0 of 0 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links

measured 6 of 6 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-12T06:34:41.77262+00:00

measured 6 of 6 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-12T13:41:29.643454Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-05-10T22:45:50.917574Z

Reference resolution

0 of 0 outbound references displayed

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External citation measurements

No source-named external measurement is stored.

Outbound references

No outbound reference observations are available for this paper version.

Pith citing papers

Observation 03cf449e-78d4-40eb-9a52-227b9efad79d · inbound

Machine-learning emergent spacetime from linear response in future tabletop quantum gravity experiments cites this paper.

Machine-learning emergent spacetime from linear response in future tabletop quantum gravity experiments Holographic reconstruction of black hole spacetime: machine learning and entanglement entropy

Reference 23

Resolution
unresolved
no resolver link, observed 2026-08-12T13:41:29.643454Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-12T13:41:29.643454Z digest=sha256:e0a874ea37273cb8abb4d917b7a9ba507ddf9a17a1c5e1ef3228ba252f1f0127

Observation 5bc42e54-8425-4488-9f7a-4e8168a71549 · inbound

Heavy Quarkonium Spectrum and Decay Constants from a Neural-Network-Based Holographic Model cites this paper.

Heavy Quarkonium Spectrum and Decay Constants from a Neural-Network-Based Holographic Model Holographic reconstruction of black hole spacetime: machine learning and entanglement entropy

Reference 81

Resolution
unresolved
no resolver link, observed 2026-08-03T08:12:18.166361Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-03T08:12:18.166361Z digest=sha256:df2b703235f97eac7410aee753e3a6f15b3c95a156b38eb7090ec2bda6f9d655

Observation a7192c2f-9c6c-4b4b-b1fb-644e3e210249 · inbound

Holographic entanglement entropy, Wilson loops, and neural networks cites this paper.

Holographic entanglement entropy, Wilson loops, and neural networks Holographic reconstruction of black hole spacetime: machine learning and entanglement entropy

Reference 6

Resolution
verified exact
arxiv_id, observed 2026-05-10T22:45:50.921344Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-10T19:34:31.226485Z digest=sha256:aec8f11e7c795ec7df4b6e7e929cc93f4f6f6c40b9a09051554fe4966722420d

Observation 67929ac3-1b52-4a5d-9e52-dd1604df4386 · inbound

Probing bulk geometry via pole skipping: from static to rotating spacetimes cites this paper.

Probing bulk geometry via pole skipping: from static to rotating spacetimes Holographic reconstruction of black hole spacetime: machine learning and entanglement entropy

Reference 106

Resolution
verified exact
arxiv_id, observed 2026-05-10T11:15:10.529658Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-05-10T11:12:50.614044Z digest=sha256:84126cae6a65087a3e33807689a31d4325520ef089c26f94ecb0d37efa68c032

Observation d1559a04-07a7-40f3-9fc1-c20fc9c1950d · inbound

Holographic Learning from Fermionic Spectra: Application to Strange Metal Phenomenology cites this paper.

Holographic Learning from Fermionic Spectra: Application to Strange Metal Phenomenology Holographic reconstruction of black hole spacetime: machine learning and entanglement entropy

Reference 113

Resolution
unresolved
no resolver link, observed 2026-07-12T06:32:21.419737Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-07-12T06:32:21.419737Z digest=sha256:48a78b048e1290ab3cef27c77be48af12ca36657853cca6695d2532341864207

Observation d071801a-4c94-4119-8e89-b447870457a8 · inbound

Holographic Learning from Fermionic Spectra: Application to Strange Metal Phenomenology cites this paper.

Holographic Learning from Fermionic Spectra: Application to Strange Metal Phenomenology Holographic reconstruction of black hole spacetime: machine learning and entanglement entropy

Reference 122

Resolution
unresolved
no resolver link, observed 2026-08-02T09:02:10.642358Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-02T09:02:10.642358Z digest=sha256:1b293a10e13983cf42bdfdea84bbc54822f17ba976b8891df8ecf5ec51007d32