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Paper Citation Record · LEDGER

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats

As of 22 August 2026, this Paper Citation Record lists 26 of 26 outbound references and 0 inbound Pith citation observations for arXiv:2607.23685.

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

pith.paper-citation-record.v1
2607.23685 v1

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measured 26 of 26 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-07-30T16:01:12.126150Z

measured 26 of 26 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-22T06:32:14.747728+00:00

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26 of 26 outbound references displayed

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Outbound references

Observation 371c2a23-2a5d-423f-8e02-3f5df506a499 · outbound

This paper cites Meseguer, I.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Meseguer, I

Reference 1

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Observation f2315aac-4633-4eb8-9abf-cba130272e98 · outbound

This paper cites Conceptual Thermal Control System Design for a Lunar Surface Habitat,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Conceptual Thermal Control System Design for a Lunar Surface Habitat,

Reference 2

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Observation c0825f47-8b9c-4162-b535-5b29b52b1025 · outbound

This paper cites Martian Exploration Portable Life Support System Schematic Study,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Martian Exploration Portable Life Support System Schematic Study,

Reference 3

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Observation f140d6bb-6a1e-4a8e-a9d2-51a9b84fe2dd · outbound

This paper cites Advanced passive thermal control materials and devices for spacecraft: A review,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Advanced passive thermal control materials and devices for spacecraft: A review,

Reference 4

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Observation 1aeb27d4-41db-414a-8fb2-88844c505217 · outbound

This paper cites Electrochromic emissivity modulator for spacecraft thermal management,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Electrochromic emissivity modulator for spacecraft thermal management,

Reference 5

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Observation dbe9298a-a61c-441a-9936-c2a8214022b4 · outbound

This paper cites Defining a discretized space suit surface radiator with variable emissivity properties,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Defining a discretized space suit surface radiator with variable emissivity properties,

Reference 6

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Observation b6712003-63c3-4fa4-bcf9-860098c848dd · outbound

This paper cites Spectrally-selective vanadium dioxide based tunable metafilm emitter for dynamic radiative cooling,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Spectrally-selective vanadium dioxide based tunable metafilm emitter for dynamic radiative cooling,

Reference 7

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Observation 2deceff0-1d4a-455d-9c2a-b3b32c51b1a2 · outbound

This paper cites Thermochromic properties of W-doped VO 2 thin films deposited by aqueous sol-gel method for adaptive infrared stealth application,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Thermochromic properties of W-doped VO 2 thin films deposited by aqueous sol-gel method for adaptive infrared stealth application,

Reference 8

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Observation 39c43c35-f44a-4aec-acba-98544c7dea78 · outbound

This paper cites Design of VO2-based spacecraft smart radiator with low solar absorptance,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Design of VO2-based spacecraft smart radiator with low solar absorptance,

Reference 9

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Observation 52fd0169-bd87-4617-af96-b26acdd0e569 · outbound

This paper cites VO2 metasurface smart thermal emitter with high visual transparency for passive radiative cooling regulation in space and terrestrial applications,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats VO2 metasurface smart thermal emitter with high visual transparency for passive radiative cooling regulation in space and terrestrial applications,

Reference 10

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Observation 0aaeb361-f21b-4e40-a7a0-cd1a74e7acce · outbound

This paper cites Electrochromic materials and devices: present and future,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Electrochromic materials and devices: present and future,

Reference 11

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Observation f261fce5-523d-4dd4-bd03-d9806fb4d137 · outbound

This paper cites Solid-State Phase-Change Heterostructures for Radiative Heating and Cooling in Space,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Solid-State Phase-Change Heterostructures for Radiative Heating and Cooling in Space,

Reference 12

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Observation f5715b18-5f4d-407e-9efd-220622946180 · outbound

This paper cites Thermochromic Variable Emissivity Material Thermal Modeling and Test Correlation,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Thermochromic Variable Emissivity Material Thermal Modeling and Test Correlation,

Reference 13

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Observation 33da73c4-8bb4-4923-86a0-582b9c6ed23a · outbound

This paper cites Characterizing transient thermal interactions between lunar regolith and surface spacecraft,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Characterizing transient thermal interactions between lunar regolith and surface spacecraft,

Reference 14

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Observation febfde5d-4db9-48ae-b032-42981d8ac540 · outbound

This paper cites A comprehensive 3D thermophysical model of the lunar surface,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats A comprehensive 3D thermophysical model of the lunar surface,

Reference 15

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Observation ccfdd926-f1ef-40b2-bc2f-31d0354f3dde · outbound

This paper cites Surface brightness temperatures at the Apollo 17 heat flow site: Thermal conductivity of the upper 15 cm of regolith,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Surface brightness temperatures at the Apollo 17 heat flow site: Thermal conductivity of the upper 15 cm of regolith,

Reference 16

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Observation 67e20d1b-98c5-4e4a-9c56-2ed5512d7e2d · outbound

This paper cites Lunar reconnaissance orbiter (LRO): Observations for lunar exploration and science,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Lunar reconnaissance orbiter (LRO): Observations for lunar exploration and science,

Reference 17

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Observation 8be0e4e0-8dae-490f-a0e5-e655f58ec068 · outbound

This paper cites Transient thermal model and analysis of the lunar surface and regolith for cryogenic fluid storage,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Transient thermal model and analysis of the lunar surface and regolith for cryogenic fluid storage,

Reference 18

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Observation c69a9851-2353-4c1b-8447-7729b5a43062 · outbound

This paper cites Safeguarding Earth’s biodiversity by creating a lunar biorepository,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Safeguarding Earth’s biodiversity by creating a lunar biorepository,

Reference 19

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Observation 6ee99f27-a872-481c-9a8d-eeed1ff0abc7 · outbound

This paper cites Artemis deep space habitation: Enabling a sustained human presence on the moon and beyond,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Artemis deep space habitation: Enabling a sustained human presence on the moon and beyond,

Reference 20

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Observation d6b9a29e-4d00-4d64-8188-feb4586f209c · outbound

This paper cites Evaluating potential landing sites for the Artemis III mission using a multi-criteria decision making approach,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Evaluating potential landing sites for the Artemis III mission using a multi-criteria decision making approach,

Reference 21

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Observation 052a9950-4fc3-44ae-9d10-e3c3db0ee99e · outbound

This paper cites Lunar Thermal Analysis Guidebook (L-TAG),.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Lunar Thermal Analysis Guidebook (L-TAG),

Reference 22

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Observation 41f201ae-cfc1-47a5-9969-5b594f2acd8a · outbound

This paper cites Lunar habitats: A brief overview of issues and concepts,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Lunar habitats: A brief overview of issues and concepts,

Reference 23

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Observation 05ad7572-37ee-454b-ba4d-1789b268f95a · outbound

This paper cites Comparison of observed Beta cloth interactions with simulated and actual space environment,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Comparison of observed Beta cloth interactions with simulated and actual space environment,

Reference 24

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Observation 53f6c952-8436-4d77-b710-45bf7de93501 · outbound

This paper cites TransHab - NASA’s large-scale inflatable spacecraft,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats TransHab - NASA’s large-scale inflatable spacecraft,

Reference 25

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Observation dcc5b67f-a7b0-43a2-b058-3f40ecafe565 · outbound

This paper cites Novel Methods for Modeling Thermochromic Variable Emissivity Surfaces,.

Variable Emissivity Modeling for Sustainable Lunar Surface Habitats Novel Methods for Modeling Thermochromic Variable Emissivity Surfaces,

Reference 26

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