ExplorerSpace ScienceAstrophysics
Research PaperResearchia:202606.13006

AESTRA II: Generative Spectral Modeling of the Sun as a Star for Precise Radial Velocities

Yan Liang

Abstract

The detection of Earth analogs with extreme-precision radial velocities (EPRVs) is limited by spectral variability from stellar activity, telluric absorption, and instrumental systematics. We apply AESTRA, a generative spectrum modeling framework, to NEID Sun-as-a-star observations. AESTRA empirically decomposes the spectra into stellar line-shape variability, micro-telluric absorption, and continuum variability without external atmospheric or stellar templates. After removing the learned tellur...

Submitted: June 13, 2026Subjects: Astrophysics; Space Science

Description / Details

The detection of Earth analogs with extreme-precision radial velocities (EPRVs) is limited by spectral variability from stellar activity, telluric absorption, and instrumental systematics. We apply AESTRA, a generative spectrum modeling framework, to NEID Sun-as-a-star observations. AESTRA empirically decomposes the spectra into stellar line-shape variability, micro-telluric absorption, and continuum variability without external atmospheric or stellar templates. After removing the learned telluric and continuum components, we train a low-dimensional representation of the spectrum to infer activity-driven apparent RVs jointly with candidate Doppler signals. We evaluate the method with 500 single-planet injection-recovery tests spanning periods of 2.5 to 400 days and semi-amplitudes of K = 0.1 to 0.7 m s^-1, calibrating the detection criterion to yield zero spurious detections. At this matched confidence level, AESTRA recovers 238 injected planets, including 13 with K < 0.3 m s^-1, whereas traditional CCF-based activity-indicator detrending recovers 9 planets and none below K = 0.5 m s^-1.


Source: arXiv:2606.13574v1 - http://arxiv.org/abs/2606.13574v1 PDF: https://arxiv.org/pdf/2606.13574v1 Original Link: http://arxiv.org/abs/2606.13574v1

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Submission Info
Date:
Jun 13, 2026
Topic:
Space Science
Area:
Astrophysics
Comments:
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