Comparing Apples with Apples: Robust Detection Limits for Exoplanet High-Contrast Imaging in the Presence of non-Gaussian Noise

Fuente: arXiv
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Main Authors: Bonse, Markus J., Garvin, Emily O., Gebhard, Timothy D., Dannert, Felix A., Cantalloube, Faustine, Cugno, Gabriele, Absil, Olivier, Hayoz, Jean, Milli, Julien, Kasper, Markus, Quanz, Sascha P.
Format: Preprint
Published: 2023
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author Bonse, Markus J.
Garvin, Emily O.
Gebhard, Timothy D.
Dannert, Felix A.
Cantalloube, Faustine
Cugno, Gabriele
Absil, Olivier
Hayoz, Jean
Milli, Julien
Kasper, Markus
Quanz, Sascha P.
author_facet Bonse, Markus J.
Garvin, Emily O.
Gebhard, Timothy D.
Dannert, Felix A.
Cantalloube, Faustine
Cugno, Gabriele
Absil, Olivier
Hayoz, Jean
Milli, Julien
Kasper, Markus
Quanz, Sascha P.
contents Over the past decade, hundreds of nights have been spent on the worlds largest telescopes to search for and directly detect new exoplanets using high-contrast imaging (HCI). Thereby, two scientific goals are of central interest: First, to study the characteristics of the underlying planet population and distinguish between different planet formation and evolution theories. Second, to find and characterize planets in our immediate Solar neighborhood. Both goals heavily rely on the metric used to quantify planet detections and non-detections. Current standards often rely on several explicit or implicit assumptions about the noise. For example, it is often assumed that the residual noise after data post-processing is Gaussian. While being an inseparable part of the metric, these assumptions are rarely verified. This is problematic as any violation of these assumptions can lead to systematic biases. This makes it hard, if not impossible, to compare results across datasets or instruments with different noise characteristics. We revisit the fundamental question of how to quantify detection limits in HCI. We focus our analysis on the error budget resulting from violated assumptions. To this end, we propose a new metric based on bootstrapping that generalizes current standards to non-Gaussian noise. We apply our method to archival HCI data from the NACO-VLT instrument and derive detection limits for different types of noise. Our analysis shows that current standards tend to give detection limit that are about one magnitude too optimistic in the speckle-dominated regime. That is, HCI surveys may have excluded planets that can still exist.
format Preprint
id arxiv_https___arxiv_org_abs_2303_12030
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Comparing Apples with Apples: Robust Detection Limits for Exoplanet High-Contrast Imaging in the Presence of non-Gaussian Noise
Bonse, Markus J.
Garvin, Emily O.
Gebhard, Timothy D.
Dannert, Felix A.
Cantalloube, Faustine
Cugno, Gabriele
Absil, Olivier
Hayoz, Jean
Milli, Julien
Kasper, Markus
Quanz, Sascha P.
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Over the past decade, hundreds of nights have been spent on the worlds largest telescopes to search for and directly detect new exoplanets using high-contrast imaging (HCI). Thereby, two scientific goals are of central interest: First, to study the characteristics of the underlying planet population and distinguish between different planet formation and evolution theories. Second, to find and characterize planets in our immediate Solar neighborhood. Both goals heavily rely on the metric used to quantify planet detections and non-detections. Current standards often rely on several explicit or implicit assumptions about the noise. For example, it is often assumed that the residual noise after data post-processing is Gaussian. While being an inseparable part of the metric, these assumptions are rarely verified. This is problematic as any violation of these assumptions can lead to systematic biases. This makes it hard, if not impossible, to compare results across datasets or instruments with different noise characteristics. We revisit the fundamental question of how to quantify detection limits in HCI. We focus our analysis on the error budget resulting from violated assumptions. To this end, we propose a new metric based on bootstrapping that generalizes current standards to non-Gaussian noise. We apply our method to archival HCI data from the NACO-VLT instrument and derive detection limits for different types of noise. Our analysis shows that current standards tend to give detection limit that are about one magnitude too optimistic in the speckle-dominated regime. That is, HCI surveys may have excluded planets that can still exist.
title Comparing Apples with Apples: Robust Detection Limits for Exoplanet High-Contrast Imaging in the Presence of non-Gaussian Noise
topic Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2303.12030