Extracting the X-ray reverberation response functions from the AGN light curves using an autoencoder

Fuente: arXiv
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Main Authors: Deesamutara, Sanhanat, Chainakun, Poemwai, Worrakitpoonpon, Tirawut, Khanthasombat, Kamonwan, Luangtip, Wasutep, Jiang, Jiachen, Nuñez, Francisco Pozo, Young, Andrew J.
Format: Preprint
Published: 2025
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author Deesamutara, Sanhanat
Chainakun, Poemwai
Worrakitpoonpon, Tirawut
Khanthasombat, Kamonwan
Luangtip, Wasutep
Jiang, Jiachen
Nuñez, Francisco Pozo
Young, Andrew J.
author_facet Deesamutara, Sanhanat
Chainakun, Poemwai
Worrakitpoonpon, Tirawut
Khanthasombat, Kamonwan
Luangtip, Wasutep
Jiang, Jiachen
Nuñez, Francisco Pozo
Young, Andrew J.
contents We study the X-ray reverberation in active galactic nuclei (AGN) using the variational autoencoder (VAE), which is a machine-learning algorithm widely used for signal processing and feature reconstruction. While the X-ray reverberation signatures that contain the information of the accretion disk and the X-ray emitting corona are commonly analyzed in the Fourier domain, this work aims to extract the reverberation response functions directly from the AGN light curves. The VAE is trained using the simulated light curves that contain the primary X-rays from the lamp-post corona varying its height and the corresponding reflection X-rays from the disk. We use progressively more realistic light-curve models, such as those that include the effects of disk-propagating fluctuations and random noises, to assess the ability of the VAE to reconstruct the response profiles. Interestingly, the VAE can recognize the reverberation patterns on the light curves, hence the coronal height can be predicted. We then deploy the VAE model to the XMM-Newton data of IRAS 13224-3809 and directly estimate, for the first time, the response functions of this source in various observations. The result reveals the corona changing its height between $3~r_{\rm g}$ and $20~r_{\rm g}$, which is correlated with the source luminosity and in line with previous literature. Finally, we discuss the advantages and limitations of this method.
format Preprint
id arxiv_https___arxiv_org_abs_2501_14618
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extracting the X-ray reverberation response functions from the AGN light curves using an autoencoder
Deesamutara, Sanhanat
Chainakun, Poemwai
Worrakitpoonpon, Tirawut
Khanthasombat, Kamonwan
Luangtip, Wasutep
Jiang, Jiachen
Nuñez, Francisco Pozo
Young, Andrew J.
High Energy Astrophysical Phenomena
Instrumentation and Methods for Astrophysics
We study the X-ray reverberation in active galactic nuclei (AGN) using the variational autoencoder (VAE), which is a machine-learning algorithm widely used for signal processing and feature reconstruction. While the X-ray reverberation signatures that contain the information of the accretion disk and the X-ray emitting corona are commonly analyzed in the Fourier domain, this work aims to extract the reverberation response functions directly from the AGN light curves. The VAE is trained using the simulated light curves that contain the primary X-rays from the lamp-post corona varying its height and the corresponding reflection X-rays from the disk. We use progressively more realistic light-curve models, such as those that include the effects of disk-propagating fluctuations and random noises, to assess the ability of the VAE to reconstruct the response profiles. Interestingly, the VAE can recognize the reverberation patterns on the light curves, hence the coronal height can be predicted. We then deploy the VAE model to the XMM-Newton data of IRAS 13224-3809 and directly estimate, for the first time, the response functions of this source in various observations. The result reveals the corona changing its height between $3~r_{\rm g}$ and $20~r_{\rm g}$, which is correlated with the source luminosity and in line with previous literature. Finally, we discuss the advantages and limitations of this method.
title Extracting the X-ray reverberation response functions from the AGN light curves using an autoencoder
topic High Energy Astrophysical Phenomena
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2501.14618