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Paper Citation Record · LEDGER

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths

As of 21 August 2026, this Paper Citation Record lists 21 of 21 outbound references and 1 inbound Pith citation observation for arXiv:2411.12708.

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

pith.paper-citation-record.v1
2411.12708 v1

Coverage vector

measured 21 of 21 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-12T17:21:13.124092Z

measured 22 of 22 standing notices

One-hop event checks from named stored sources.

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measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-06T10:25:57.617336Z

measured 0 of 1 external citation measurements

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

Source: cited_works

Reference resolution

21 of 21 outbound references displayed

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External citation measurements

No source-named external measurement is stored.

Outbound references

Observation a0fb7a33-80e9-4b89-b027-eec79a932187 · outbound

This paper cites 2021; Gaudi et al.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths 2021; Gaudi et al

Reference 1

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Observation 7da2c9e6-a13a-46c7-88df-76eeafadeef4 · outbound

This paper cites Many teams are working on constraining what spectroscopic signature molecules of life, or biomarkers, could be targeted to constrain whether an exoplanet hosts life.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Many teams are working on constraining what spectroscopic signature molecules of life, or biomarkers, could be targeted to constrain whether an exoplanet hosts life

Reference 2

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Observation 0782f5e5-e10f-4f89-9721-dd197c89946f · outbound

This paper cites DSCOVR is in a Lissajous orbit around L1, where it takes dayside images of the Earth approximately every hour.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths DSCOVR is in a Lissajous orbit around L1, where it takes dayside images of the Earth approximately every hour

Reference 3

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Observation 4e1602cf-80a7-4f24-b2ac-7bfa3edd6816 · outbound

This paper cites This is by no means the only work that describes these phases as such, but in the interest of clarity it is included here.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths This is by no means the only work that describes these phases as such, but in the interest of clarity it is included here

Reference 4

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Observation 01e363f0-807a-4924-9ecb-2ffbfa984706 · outbound

This paper cites The simulaZons in Figure 2 where the EPIC images are reproduced show the main features are reproduced well.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths The simulaZons in Figure 2 where the EPIC images are reproduced show the main features are reproduced well

Reference 5

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Observation 8d86fd98-593b-4894-81d3-d2bf311a244e · outbound

This paper cites an unresolved cited work.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Unresolved cited work

Reference 6

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Observation 10e270d5-0167-4fea-b424-341b54fda004 · outbound

This paper cites 2020, Astrophys J, 896 (The American Astronomical Society), 22 Arnold, L., Gillet, S., Lardière, O., Riaud, P ., & Schneider, J.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths 2020, Astrophys J, 896 (The American Astronomical Society), 22 Arnold, L., Gillet, S., Lardière, O., Riaud, P ., & Schneider, J

Reference 7

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Observation 8e91dd92-a30d-42b7-bb54-13725ab90b97 · outbound

This paper cites an unresolved cited work.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Unresolved cited work

Reference 18

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Observation 71bb28ce-9a22-4dc2-bd26-7290a0878b99 · outbound

This paper cites The HWO is currently only a recommendation from the 2020 astrophysics decadal study, so the settings adopted are the requirements of the observatory from this study.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths The HWO is currently only a recommendation from the 2020 astrophysics decadal study, so the settings adopted are the requirements of the observatory from this study

Reference 19

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Observation 06680b5b-3c93-48de-ab4a-f9f6535f8d10 · outbound

This paper cites The images in the top are generated from the spectra in units of spectral radiance, which is subsequently converted to albedo for the middle panels.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths The images in the top are generated from the spectra in units of spectral radiance, which is subsequently converted to albedo for the middle panels

Reference 70

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Observation adf0799c-1a50-4dfe-962f-d6806ce06779 · outbound

This paper cites For snow coverage, monthly average data is obtained from another MODIS source (MOD10CM).

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths For snow coverage, monthly average data is obtained from another MODIS source (MOD10CM)

Reference 91

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Observation 47cac828-65df-4759-94f7-f4d75ed8f634 · outbound

This paper cites 2011; LusZg-Yaeger et al.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths 2011; LusZg-Yaeger et al

Reference 2002

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Observation 30b810d3-eaa4-4bb8-ac34-a4ccb9c0a6cd · outbound

This paper cites 2016; Burt & Smith 2012; Livengood et al.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths 2016; Burt & Smith 2012; Livengood et al

Reference 2006

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Observation 91127c53-4ec5-453f-93b6-c2858283bc79 · outbound

This paper cites 2011, 2009; De Cock et al.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths 2011, 2009; De Cock et al

Reference 2008

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Observation 6052296c-de7c-4197-9edf-2e9ecead32d1 · outbound

This paper cites an unresolved cited work.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Unresolved cited work

Reference 2010

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Observation 0253010b-0b73-446b-9591-129b2c696c71 · outbound

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The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Unresolved cited work

Reference 2014

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Observation 9f1565e0-e903-4741-8527-806c550e6969 · outbound

This paper cites The focus of the comparison is instead on the spaZal variaZons.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths The focus of the comparison is instead on the spaZal variaZons

Reference 2016

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Observation 624a670d-85b7-4952-9db2-ee371f4a8340 · outbound

This paper cites In this work, we approximated the effects of these various aerosols, excluding water ice and water clouds, with a single Mie scaOerer.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths In this work, we approximated the effects of these various aerosols, excluding water ice and water clouds, with a single Mie scaOerer

Reference 2018

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Observation 467a7e09-9cbe-46a8-8cee-e0f0786381d6 · outbound

This paper cites an unresolved cited work.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Unresolved cited work

Reference 2019

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Observation ac213f3b-e2c8-4aea-8d03-71bf237d8f96 · outbound

This paper cites Second panel: Simulations (top row) and Himawari-8 observations of the Earth from geostationary orbit (longitude 140.7).

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Second panel: Simulations (top row) and Himawari-8 observations of the Earth from geostationary orbit (longitude 140.7)

Reference 2022

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Observation 6b8e47d7-e12e-4343-91ae-d8e301de5f39 · outbound

This paper cites Surface reflecZons, Rayleigh scaOering, refracZon, collision induced absorpZon are included in the simulaZons.

The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths Surface reflecZons, Rayleigh scaOering, refracZon, collision induced absorpZon are included in the simulaZons

Reference 2024

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Pith citing papers

Observation 637c2d25-32fe-4b52-89cd-f12f181b0c9f · inbound

Towards the Habitable Worlds Observatory: 1D CNN Retrieval of Reflection Spectra from Evolving Earth Analogs cites this paper.

Towards the Habitable Worlds Observatory: 1D CNN Retrieval of Reflection Spectra from Evolving Earth Analogs The pale blue dot: using the Planetary Spectrum Generator to simulate signals from hyper realistic exo-Earths

Reference 46

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Unavailable: canonical work link unavailable.

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