ESCAPE project. CAPyBARA: a Roman Coronagraph simulator for post-processing methods development

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Altinier, Lisa, Choquet, Élodie, Vigan, Arthur, Godoy, Nicolás, Lau, Alexis
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929492674478080
author Altinier, Lisa
Choquet, Élodie
Vigan, Arthur
Godoy, Nicolás
Lau, Alexis
author_facet Altinier, Lisa
Choquet, Élodie
Vigan, Arthur
Godoy, Nicolás
Lau, Alexis
contents The Roman Coronagraph Instrument will be the first space facility equipped with deformable mirrors (DMs). These will lead to reach a contrast of $10^{-8}$ or better in a dark hole between $3-9 λ/D$. Post-processing techniques play an important role in increasing the contrast limits. Our work investigates how DMs can be used to calibrate the instrument response to controlled wavefront error maps and to improve the post-processing performance. To this goal, we are developing a simulation pipeline, CAPyBARA, that includes both a propagation model of the Coronagraph and a post-processing module and produces starlight subtracted images of a science target. This pipeline will allow us to investigate alternative observing strategies and test their performance for the Roman Coronagraph. Here we present the first version of the simulator: it currently reproduces the optical propagation, which consists in the hybrid Lyot coronagraph optical structure and dark-hole digging technique (Electric Field Conjugation coupled with $β$-bumping), the environment (quasi-static aberration) and the post-processing. With it, we mimic a Coronagraph Instrument observing sequence, which consists in first acquiring reference star data before slewing to the scientific target, and we investigate how the evolution of quasi-static aberrations deteriorate the contrast limit in the dark hole. We simulate a science target with planets at high contrast with their star and we perform a first post-processing analysis with classical subtraction techniques. Here we present the CAPyBARA simulator, as well as some first results. The next step will be to generate PSF libraries by injecting pre-calibrated probes on the DMs (in open loop) during the reference star acquisition and compute a PCA model. Later, we will compare the performance gain obtained with the modulated-DM reference library over standard approaches (RDI).
format Preprint
id arxiv_https___arxiv_org_abs_2409_05781
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle ESCAPE project. CAPyBARA: a Roman Coronagraph simulator for post-processing methods development
Altinier, Lisa
Choquet, Élodie
Vigan, Arthur
Godoy, Nicolás
Lau, Alexis
Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
The Roman Coronagraph Instrument will be the first space facility equipped with deformable mirrors (DMs). These will lead to reach a contrast of $10^{-8}$ or better in a dark hole between $3-9 λ/D$. Post-processing techniques play an important role in increasing the contrast limits. Our work investigates how DMs can be used to calibrate the instrument response to controlled wavefront error maps and to improve the post-processing performance. To this goal, we are developing a simulation pipeline, CAPyBARA, that includes both a propagation model of the Coronagraph and a post-processing module and produces starlight subtracted images of a science target. This pipeline will allow us to investigate alternative observing strategies and test their performance for the Roman Coronagraph. Here we present the first version of the simulator: it currently reproduces the optical propagation, which consists in the hybrid Lyot coronagraph optical structure and dark-hole digging technique (Electric Field Conjugation coupled with $β$-bumping), the environment (quasi-static aberration) and the post-processing. With it, we mimic a Coronagraph Instrument observing sequence, which consists in first acquiring reference star data before slewing to the scientific target, and we investigate how the evolution of quasi-static aberrations deteriorate the contrast limit in the dark hole. We simulate a science target with planets at high contrast with their star and we perform a first post-processing analysis with classical subtraction techniques. Here we present the CAPyBARA simulator, as well as some first results. The next step will be to generate PSF libraries by injecting pre-calibrated probes on the DMs (in open loop) during the reference star acquisition and compute a PCA model. Later, we will compare the performance gain obtained with the modulated-DM reference library over standard approaches (RDI).
title ESCAPE project. CAPyBARA: a Roman Coronagraph simulator for post-processing methods development
topic Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2409.05781