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Paper Citation Record · LEDGER

Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

As of 17 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 15 inbound Pith citation observations for arXiv:2403.02398.

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pith.paper-citation-record.v1
2403.02398 v2

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-16T06:30:59.297886+00:00

measured 15 of 15 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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Pith citing papers

Observation f477ab82-19a0-47c6-883f-42ea6a62d3e9 · inbound

Picolensing as a Probe of Primordial Black Hole Dark Matter cites this paper.

Picolensing as a Probe of Primordial Black Hole Dark Matter Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 46

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Observation 086e43df-f8b5-42bc-9af7-5f2de5f5a27a · inbound

Is the formation of primordial black holes from single-field inflation compatible with standard cosmology? cites this paper.

Is the formation of primordial black holes from single-field inflation compatible with standard cosmology? Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 80

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Observation 03d178b0-e489-4701-aa69-03e8474a7f3f · inbound

The Irrelevance of Primordial Black Hole Clustering in the LVK mass range cites this paper.

The Irrelevance of Primordial Black Hole Clustering in the LVK mass range Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 131

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Observation 0637200e-05ec-4b45-a66c-255ea324111b · inbound

Whispers from the Early Universe: The Ringdown of Primordial Black Holes cites this paper.

Whispers from the Early Universe: The Ringdown of Primordial Black Holes Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 66

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Observation 5f5e2833-9e62-42a2-ad47-ad89dcfdfe66 · inbound

Closing the Mass Window for Stupendously Large Black Holes cites this paper.

Closing the Mass Window for Stupendously Large Black Holes Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 46

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Observation 6e4d9ad2-cc7a-48d7-bca9-89d2438636ff · inbound

Implications for Pulsar Timing Arrays of Sub-solar Black Hole Detections: From LVK to Einstein Telescope and Cosmic Explorer cites this paper.

Implications for Pulsar Timing Arrays of Sub-solar Black Hole Detections: From LVK to Einstein Telescope and Cosmic Explorer Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 276

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Observation 24129119-8bfa-4d2b-ac0c-498dd89fc91a · inbound

Probing Primordial Black Holes with upcoming Radio Telescopes: a case study for LOFAR2.0, FAST Core Array and BINGO cites this paper.

Probing Primordial Black Holes with upcoming Radio Telescopes: a case study for LOFAR2.0, FAST Core Array and BINGO Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 86

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Observation f178878a-792c-46b9-8217-de4bee02a1fc · inbound

Probing Primordial Black Holes with upcoming Radio Telescopes: a case study for LOFAR2.0, FAST Core Array and BINGO cites this paper.

Probing Primordial Black Holes with upcoming Radio Telescopes: a case study for LOFAR2.0, FAST Core Array and BINGO Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 32

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Observation 760f8ca0-9e44-4e3e-958b-a5a7b5ac5f9f · inbound

Microlensing of fast and slow compact objects cites this paper.

Microlensing of fast and slow compact objects Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 15

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Observation 5586e425-564c-4b60-8edc-4758364715c5 · inbound

Constraints on primordial black holes from the first part of LIGO-Virgo-KAGRA fourth observing run cites this paper.

Constraints on primordial black holes from the first part of LIGO-Virgo-KAGRA fourth observing run Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 83

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Observation 1c6ea252-37e9-4db1-89eb-5a63debf9f68 · inbound

Constraints on primordial black holes from the first part of LIGO-Virgo-KAGRA fourth observing run cites this paper.

Constraints on primordial black holes from the first part of LIGO-Virgo-KAGRA fourth observing run Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 83

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Observation 1389e960-18c4-40d4-8348-3c41d4322693 · inbound

The swallowed spike: the formation of light primordial black hole structures around heavy seeds cites this paper.

The swallowed spike: the formation of light primordial black hole structures around heavy seeds Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 24

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Observation 0e58404d-0b64-42f5-b77a-d6b718ed43ac · inbound

The swallowed spike: the formation of light primordial black hole structures around heavy seeds cites this paper.

The swallowed spike: the formation of light primordial black hole structures around heavy seeds Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 24

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Observation 21515327-21f2-406d-8c59-b7d9a175f61a · inbound

Do Primordial Black Hole Clusters Survive the Galaxy? Collisional Disruption and Microlensing Implications cites this paper.

Do Primordial Black Hole Clusters Survive the Galaxy? Collisional Disruption and Microlensing Implications Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 7

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Observation efbcbb84-70d6-4b6f-8995-f25cb272f12a · inbound

Microlensing Detection and Inference via Learned Bayes Factors cites this paper.

Microlensing Detection and Inference via Learned Bayes Factors Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations

Reference 64

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