Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-02T05:06:13.063514Z
Paper Citation Record · LEDGER
As of 14 August 2026, this Paper Citation Record lists 29 of 29 outbound references and 0 inbound Pith citation observations for arXiv:2607.13510.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-02T05:06:13.063514Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-14T06:32:32.682623+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
29 of 29 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 9f1c49d7-ef19-45ff-b464-de44dac5d88b · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Extreme lunar surface charging during solar energetic particle events
Reference 1
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Observation 56b38f42-64eb-4725-8aed-5d4dcc176c1b · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole A comparison of ARTEMIS observations and particle- in-cell modeling of the lunar photoelectron sheath in the terrestrial magnetotail
Reference 2
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Observation 16f208ed-0107-41e2-8fda-44c26ab4c1d5 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Photoemission and electrostatic potentials on the day- side lunar surface in the terrestrial magnetotail lobes
Reference 3
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Observation 57b7941a-0c01-4fb4-94ec-c5f027530954 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Kaguya observations of the lunar wake in the terrestrial foreshock: Surface potential change by bow-shock reflected ions
Reference 4
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Observation 959fa084-671c-4696-a8ae-eef96491ce90 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Complex electric fields near the lunar terminator: The near-surface wake and accelerated dust
Reference 5
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Observation 1b4efbf1-5fb5-4e03-afda-9b59e47778ac · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Lunar Prospector measurements of secondary electron emission from lunar regolith
Reference 6
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Observation 71517bdc-dee5-40c5-8e8c-8e2ec150b850 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Dependence of lunar surface charging on solar wind plasma conditions and solar irradiation
Reference 7
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Observation c735b05a-159f-4bd7-85d8-9ea6089fed62 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Formation of lunar surface water associated with high-energy electrons in Earth’s magnetotail
Reference 8
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Observation c94ded40-8f05-4f39-ad68-e01d040bceec · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Lunar Prospector observations of the electrostatic poten- tial of the lunar surface and its response to incident currents
Reference 9
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Unavailable: canonical work link unavailable.
Observation 271365bc-0edd-4ca0-8227-e602bb994d4f · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole First remote measurements of lunar surface charg- ing from ARTEMIS: Evidence for nonmonotonic sheath potentials above the dayside surface
Reference 10
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Observation fe24b340-fb1d-4e1a-91c3-ea4fe01e157d · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole ARTEMIS observations of lunar dayside plasma in the terrestrial magnetotail lobe
Reference 11
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Observation c57a084d-85d7-4ba2-a818-4a001a581f38 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole ARTEMIS observations of lunar nightside surface potentials in the magnetotail lobes: Evidence for micrometeoroid impact charging
Reference 12
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Observation b5852f2a-721c-41d7-bd30-8ce0b209b89c · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Character and spatial distribution of mineralogy at the lunar south polar region
Reference 13
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Unavailable: canonical work link unavailable.
Observation 57562e87-2b3f-4e56-ad69-59224a236837 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Loss of solar wind plasma neutrality and affect on surface potentials near the lunar terminator and shadowed polar regions
Reference 14
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Unavailable: canonical work link unavailable.
Observation 77dae1be-1456-4fcf-ad35-f4930ce83706 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Anticipated electrical environment within permanently shadowed lunar craters
Reference 15
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Unavailable: canonical work link unavailable.
Observation b96b30a8-b96a-43f8-b436-2f088ea3f943 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Plasma wake simulations and object charging in a shadowed lunar crater during a solar storm
Reference 16
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Observation cc0b1d6b-952e-482a-b61f-10ec20e3ff72 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Fully kinetic pife-pic simulations of plasma charging at lunar craters
Reference 17
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Observation 438f779a-46c4-4ca6-aca0-e4550fe8cfd2 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Distribution of charged lunar dust in the south polar region of the moon
Reference 18
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Unavailable: canonical work link unavailable.
Observation a6b22145-3501-4e36-b9e3-9fed5bef150f · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Numerical simulation of the lunar polar environment: Implications for rover exploration challenge
Reference 19
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Observation 4ce18c8a-7b07-41e3-b72f-fc563719c51c · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Theoretical analysis of the electric potential and the electrostatic dust transport around the Shackleton crater in the Lunar south pole region
Reference 20
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Observation 5cab6214-f304-4bf8-8542-78bbaf8429da · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole A new view of the lunar south pole from the lunar orbiter laser altimeter (LOLA)
Reference 21
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Observation f90e2151-ba19-4ace-b152-127a7db1e560 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Topographic Map of the Moon’s South Pole (85°S to Pole)
Reference 22
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Observation 429cebda-4b1d-4335-80e1-a69c21b70e5a · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Inversion Analysis of GEO Plasma Environmental Parameters Based on BP Neural Network
Reference 23
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Observation e2dfa952-0455-4470-a184-16c1b12bd8a2 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Study on the linkages between microstructure and permeability of porous media using pore network and BP neural network
Reference 24
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Observation 4525c344-f04c-4daa-8616-00b8341a45cb · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Three-dimensional simulation of surface charging in meteorite craters on rotating asteroids
Reference 25
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Observation 5b093705-aa10-4f8c-aafd-1d06e67cb823 · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Impact of secondary and backscattered electron cur- rents on absolute charging of structures used in spacecraft
Reference 26
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Observation 311c5ace-1878-4900-a341-7e3b92a4c8ca · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole A new charging model for spacecraft exposed dielectric (SICCE)
Reference 27
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Observation 8684661c-866c-448f-83d5-62f9bae68e7f · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Characterisation of potential landing sites for the European Space Agency’s Lunar Lander project
Reference 28
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Observation 6c0c58cd-e11c-4e39-bfcc-7e8c3d13db3f · outbound
Influence of Magnetospheric Plasma Environment on Surface Charging of the Lunar South Pole Study on Lunar Surface Charging Effects Induced by Charged Particle Flows in the Earth’s Magnetotail Lobes and Spatial Distribution Characteristics of Charged Lunar Dust
Reference 29
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No inbound Pith citation observations are available.