{"as_of":"2026-08-22T23:44:00Z","caps":{"database_statements":6,"inbound":100,"outbound":100},"context_digest":"sha256:a83ce4214afca1299e9bde41d3f6ed8e86affaeee42ce754af0d7940faa9ec10","coverage":[{"denominator":26,"lane":"reference_resolution","note":"Typed states for the displayed outbound observations.","records_observed":26,"source":"paper_references, paper_reference_links","source_observed_at":"2026-07-30T16:01:12.126150Z","state":"measured"},{"denominator":26,"lane":"standing_notices","note":"One-hop event checks from named stored sources.","records_observed":26,"source":"scholarly_work_events, retraction_status_cache","source_observed_at":"2026-08-22T06:32:14.747728+00:00","state":"measured"},{"denominator":0,"lane":"inbound_itemization","note":"Pith citing papers itemized under the disclosed page cap.","records_observed":0,"source":"paper_references, paper_reference_links","source_observed_at":null,"state":"measured"},{"denominator":1,"lane":"external_citation_measurements","note":"A source-named dated measurement, never combined with another source.","records_observed":0,"source":"cited_works","source_observed_at":null,"state":"measured"}],"external_citation_measurements":[],"inbound":[],"links":{"evidence":"/evidence","html":"/paper/2607.23685/citation-record","integrity":"/paper/2607.23685/integrity","json":"/paper/2607.23685/citation-record.json","paper":"/paper/2607.23685"},"outbound":[{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:09.744748Z","title":"Meseguer, I","venue":null,"work_id":null,"year":2012},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":1,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:09.744748Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:18db3c17e1eef8543526ce6db39cabbd4c5b4ac7b4c937ae07e1cfd7a540b19a","observation_id":"371c2a23-2a5d-423f-8e02-3f5df506a499","resolution":{"observed_at":"2026-07-30T16:01:09.744748Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:09.825254Z","title":"Conceptual Thermal Control System Design for a Lunar Surface Habitat,","venue":null,"work_id":null,"year":2021},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":2,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:09.825254Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:02717d3825ad4f9a7b7da16c97c7d5dfccf1bd0cdaf8304590e16f81c156c00f","observation_id":"f2315aac-4633-4eb8-9abf-cba130272e98","resolution":{"observed_at":"2026-07-30T16:01:09.825254Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:09.913015Z","title":"Martian Exploration Portable Life Support System Schematic Study,","venue":null,"work_id":null,"year":2025},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":3,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:09.913015Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:0ec65d1a5984f9c5b85bf9cea0a6868565ebc45509aed2649d9fda2859fb20b2","observation_id":"c0825f47-8b9c-4162-b535-5b29b52b1025","resolution":{"observed_at":"2026-07-30T16:01:09.913015Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:09.977923Z","title":"Advanced passive thermal control materials and devices for spacecraft: A review,","venue":null,"work_id":null,"year":2022},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":4,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:09.977923Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:8f9992fb11868dba7fae472c19a2d852bb196919d29376ba9ad42444f125231d","observation_id":"f140d6bb-6a1e-4a8e-a9d2-51a9b84fe2dd","resolution":{"observed_at":"2026-07-30T16:01:09.977923Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.014843Z","title":"Electrochromic emissivity modulator for spacecraft thermal management,","venue":null,"work_id":null,"year":2075},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":5,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.014843Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:c0aea8e42c6389319893baaacdd32147c18f58c18735027c28c3b05a99b30a5f","observation_id":"1aeb27d4-41db-414a-8fb2-88844c505217","resolution":{"observed_at":"2026-07-30T16:01:10.014843Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.110371Z","title":"Defining a discretized space suit surface radiator with variable emissivity properties,","venue":null,"work_id":null,"year":2015},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":6,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.110371Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:c077c24f0e10d3e3885a61ce91190091e8606d06bb08eb965ea410271e34fa14","observation_id":"dbe9298a-a61c-441a-9936-c2a8214022b4","resolution":{"observed_at":"2026-07-30T16:01:10.110371Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.228123Z","title":"Spectrally-selective vanadium dioxide based tunable metafilm emitter for dynamic radiative cooling,","venue":null,"work_id":null,"year":2020},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":7,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.228123Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:4be4fce240a8de208cf35323b3db7e222101b1958405390690d9ef2da994b574","observation_id":"b6712003-63c3-4fa4-bcf9-860098c848dd","resolution":{"observed_at":"2026-07-30T16:01:10.228123Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.341502Z","title":"Thermochromic properties of W-doped VO 2 thin films deposited by aqueous sol-gel method for adaptive infrared stealth application,","venue":null,"work_id":null,"year":2016},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":8,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.341502Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:c304d038c8e6b7d8f0665371edeed0a4264ce4ed773250398dc7576184f61193","observation_id":"2deceff0-1d4a-455d-9c2a-b3b32c51b1a2","resolution":{"observed_at":"2026-07-30T16:01:10.341502Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.419965Z","title":"Design of VO2-based spacecraft smart radiator with low solar absorptance,","venue":null,"work_id":null,"year":2024},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":9,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.419965Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:f8579ef021f2738db5667c2db948acdca7b620ae7ea47df8c80b0aadac30b27b","observation_id":"39c43c35-f44a-4aec-acba-98544c7dea78","resolution":{"observed_at":"2026-07-30T16:01:10.419965Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.526851Z","title":"VO2 metasurface smart thermal emitter with high visual transparency for passive radiative cooling regulation in space and terrestrial applications,","venue":null,"work_id":null,"year":2022},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":10,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.526851Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:5eeb724f3a42f34e5d460c816df4bf493b69417dae7b701285c0922ff222e192","observation_id":"52fd0169-bd87-4617-af96-b26acdd0e569","resolution":{"observed_at":"2026-07-30T16:01:10.526851Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.584742Z","title":"Electrochromic materials and devices: present and future,","venue":null,"work_id":null,"year":2003},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":11,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.584742Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:55716bf673982e11ecaa6be9302e67ad657fa49c0d44c7964e07fd1acfbfa1b7","observation_id":"0aaeb361-f21b-4e40-a7a0-cd1a74e7acce","resolution":{"observed_at":"2026-07-30T16:01:10.584742Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.689196Z","title":"Solid-State Phase-Change Heterostructures for Radiative Heating and Cooling in Space,","venue":null,"work_id":null,"year":2025},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":12,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.689196Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:43a61d0af24402b251ca633a8610202872c33502ca16313ea5f63942ee851fd8","observation_id":"f261fce5-523d-4dd4-bd03-d9806fb4d137","resolution":{"observed_at":"2026-07-30T16:01:10.689196Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.894747Z","title":"Thermochromic Variable Emissivity Material Thermal Modeling and Test Correlation,","venue":null,"work_id":null,"year":2025},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":13,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.894747Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:b14fbc48444853a389afe9b1fd5f15cca4e42881d4b15cffda56b673a7258cc6","observation_id":"f5715b18-5f4d-407e-9efd-220622946180","resolution":{"observed_at":"2026-07-30T16:01:10.894747Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:10.971192Z","title":"Characterizing transient thermal interactions between lunar regolith and surface spacecraft,","venue":null,"work_id":null,"year":2014},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":14,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:10.971192Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:69d072c9fccc203929c05d29f30b212cd2f445985916fd2e938143a2c4318271","observation_id":"33da73c4-8bb4-4923-86a0-582b9c6ed23a","resolution":{"observed_at":"2026-07-30T16:01:10.971192Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.034460Z","title":"A comprehensive 3D thermophysical model of the lunar surface,","venue":null,"work_id":null,"year":2022},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":15,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.034460Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:2cce881376e5d68a3a7698a4938dd8e7b068783992c98e7ed55ba00fa02d1a3b","observation_id":"febfde5d-4db9-48ae-b032-42981d8ac540","resolution":{"observed_at":"2026-07-30T16:01:11.034460Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.114099Z","title":"Surface brightness temperatures at the Apollo 17 heat flow site: Thermal conductivity of the upper 15 cm of regolith,","venue":null,"work_id":null,"year":1973},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":16,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.114099Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:e95c2b7016c25b9b86b60f4c52fda24f315564b6f6706d50864309889bfb4426","observation_id":"ccfdd926-f1ef-40b2-bc2f-31d0354f3dde","resolution":{"observed_at":"2026-07-30T16:01:11.114099Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.274748Z","title":"Lunar reconnaissance orbiter (LRO): Observations for lunar exploration and science,","venue":null,"work_id":null,"year":2010},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":17,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.274748Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:10018c5b3b2c054e9881e22138546def5da924747e752b31ff2af8cc2bd48fe5","observation_id":"67e20d1b-98c5-4e4a-9c56-2ed5512d7e2d","resolution":{"observed_at":"2026-07-30T16:01:11.274748Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.324743Z","title":"Transient thermal model and analysis of the lunar surface and regolith for cryogenic fluid storage,","venue":null,"work_id":null,"year":2008},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":18,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.324743Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:fa34d7613f9d8d2ecdd7723fc99c2bbb30b5ed8d63d34110ccfa44740f7ecdab","observation_id":"8be0e4e0-8dae-490f-a0e5-e655f58ec068","resolution":{"observed_at":"2026-07-30T16:01:11.324743Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.489629Z","title":"Safeguarding Earth’s biodiversity by creating a lunar biorepository,","venue":null,"work_id":null,"year":2024},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":19,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.489629Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:031e9e8521e528e66f01b74ffb004a9a4be816bba137b51afbdbead56a4ccef1","observation_id":"c69a9851-2353-4c1b-8447-7729b5a43062","resolution":{"observed_at":"2026-07-30T16:01:11.489629Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.604752Z","title":"Artemis deep space habitation: Enabling a sustained human presence on the moon and beyond,","venue":null,"work_id":null,"year":2022},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":20,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.604752Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:1c81c023e40c16a1aaed5a2e886100c5d2ae253afccb0bb6eec036a1873df060","observation_id":"6ee99f27-a872-481c-9a8d-eeed1ff0abc7","resolution":{"observed_at":"2026-07-30T16:01:11.604752Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.671479Z","title":"Evaluating potential landing sites for the Artemis III mission using a multi-criteria decision making approach,","venue":null,"work_id":null,"year":2025},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":21,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.671479Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:e8c4316ccef4315b019b7bb5720756f2a666365838e2f8c00efc07132bc09d90","observation_id":"d6b9a29e-4d00-4d64-8188-feb4586f209c","resolution":{"observed_at":"2026-07-30T16:01:11.671479Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.778216Z","title":"Lunar Thermal Analysis Guidebook (L-TAG),","venue":null,"work_id":null,"year":2022},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":22,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.778216Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:79d3daf4c438d7157ca6701c829d4f5f638b5a3fff7c8d2fbd351883a0bbecc9","observation_id":"052a9950-4fc3-44ae-9d10-e3c3db0ee99e","resolution":{"observed_at":"2026-07-30T16:01:11.778216Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:11.951254Z","title":"Lunar habitats: A brief overview of issues and concepts,","venue":null,"work_id":null,"year":2017},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":23,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:11.951254Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:86683bbc5c27d33536fde5e2d80457ccf566d22271fc0e34843bb2c85fb78574","observation_id":"41f201ae-cfc1-47a5-9969-5b594f2acd8a","resolution":{"observed_at":"2026-07-30T16:01:11.951254Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:12.006079Z","title":"Comparison of observed Beta cloth interactions with simulated and actual space environment,","venue":null,"work_id":null,"year":1999},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":24,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:12.006079Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:0410506f786900eff9caa8eb3e17835d33958a8265d7083d16e026b7dad0e706","observation_id":"05ad7572-37ee-454b-ba4d-1789b268f95a","resolution":{"observed_at":"2026-07-30T16:01:12.006079Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:12.077882Z","title":"TransHab - NASA’s large-scale inflatable spacecraft,","venue":null,"work_id":null,"year":2000},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":25,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:12.077882Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:8efb5e98952fdad08f6f3627000e0495dd3284cd065b51ed9c4bca98e8478c40","observation_id":"53f6c952-8436-4d77-b710-45bf7de93501","resolution":{"observed_at":"2026-07-30T16:01:12.077882Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-07-30T16:01:12.126150Z","title":"Novel Methods for Modeling Thermochromic Variable Emissivity Surfaces,","venue":null,"work_id":null,"year":2023},"citing_paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats","version":1},"reference_index":26,"source":"pdf_text","source_observed_at":"2026-07-30T16:01:12.126150Z"},"links":{"citing_paper":"/paper/2607.23685"},"observation_digest":"sha256:86d58c83c92c985c9ed0ea91e2362f3c7b85a02f9a80d255a69044d1033ebd5f","observation_id":"dcc5b67f-a7b0-43a2-b058-3f40ecafe565","resolution":{"observed_at":"2026-07-30T16:01:12.126150Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}}],"paper":{"arxiv_id":"2607.23685","last_updated":"2026-07-26T14:32:34Z","latest_version":1,"primary_category":"physics.app-ph","snapshot_observed_at":"2026-08-13T12:47:26.275029Z","submitted_at":"2026-07-26T14:32:34Z","title":"Variable Emissivity Modeling for Sustainable Lunar Surface Habitats"},"reference_resolution":{"displayed":26,"state_counts":{"malformed_identifier":0,"metadata_mismatch":0,"parse_uncertain":0,"unresolved":26,"verified_exact":0,"verified_fuzzy":0},"total_outbound_references":26},"refusal":"A citation records a reference. It does not transfer a finding from one paper to another.","schema":"pith.paper-citation-record.v1","standing_sources":[{"observed_at":"2026-08-22T06:32:14.747728+00:00","source":"crossref"},{"observed_at":"2026-08-22T06:32:06.552537+00:00","source":"retraction_watch"}],"thesis":"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."}