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Paper Citation Record · LEDGER

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates

As of 21 August 2026, this Paper Citation Record lists 35 of 35 outbound references and 0 inbound Pith citation observations for arXiv:2607.22754.

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pith.paper-citation-record.v1
2607.22754 v1

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Outbound references

Observation 39cf3531-8e10-490f-bbb1-6c566d94335d · outbound

This paper cites Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave , year = 2022, editor =.

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave , year = 2022, editor =

Reference 1

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This paper cites doi:10.17226/26141 , adsurl =.

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates doi:10.17226/26141 , adsurl =

Reference 2

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This paper cites 10.1051/0004-6361/202244578.

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates 10.1051/0004-6361/202244578

Reference 3

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates 2011 , eprint=

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This paper cites Dynamic temperature selection for parallel-tempering in Markov chain Monte Carlo simulations.

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Dynamic temperature selection for parallel-tempering in Markov chain Monte Carlo simulations

Reference 7

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This paper cites First VLTI/GRAVITY Observations of HIP 65426 b: Evidence for a Low or Moderate Orbital Eccentricity.

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates First VLTI/GRAVITY Observations of HIP 65426 b: Evidence for a Low or Moderate Orbital Eccentricity

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This paper cites American Astronomical Society Meeting Abstracts \#244 , year = 2024, series =.

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates American Astronomical Society Meeting Abstracts \#244 , year = 2024, series =

Reference 10

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Unresolved cited work

Reference 11

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This paper cites The Nancy Grace Roman Space Telescope Coronagraph Instrument (CGI) Technology Demonstration.

Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates The Nancy Grace Roman Space Telescope Coronagraph Instrument (CGI) Technology Demonstration

Reference 12

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates The NumPy array: a structure for efficient numerical computation

Reference 13

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Nature Methods , keywords =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates 2026 , note =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Astropy: A Community Python Package for Astronomy

Reference 16

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates The Astropy Project: Building an inclusive, open-science project and status of the v2.0 core package

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates 2007", month =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates doi:10.5281/zenodo.21003741 , url =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates , archiveprefix = "arXiv", eprint =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Castillo Hair and Remy Prechelt and Marlon and Kyle Barbary and Johannes Buchner and James Tocknell and James Matthews and NeutralKaon and Ian Czekala , title =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates The Journal of Open Source Software , year = 2016, month = jun, volume =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Behnel and R

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates emcee: The MCMC Hammer

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates Armando Solé and jialin and Daniel Hay Guest , title =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates orbitize! v3: Orbit fitting for the High-contrast Imaging Community

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates orbitize!: A Comprehensive Orbit-fitting Software Package for the High-contrast Imaging Community

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates REBOUND: An open-source multi-purpose N-body code for collisional dynamics

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates arXiv e-prints , keywords =

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Jointly Modeling Roman Coronagraph Astrometry and Photometry Improves Orbital Parameter Estimates doi:10.5281/zenodo.17654855 , url =

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