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Main Authors: Ezhikode, Savithri H., Anilkumar, Hema, Arun, R., Mathew, Blesson, Jithesh, V., Bhattacharyya, Suman, Nedhath, Sneha, Cysil, T. B., Muneer, S., Kartha, Sreeja S., S, Pramod Kumar
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2410.16241
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author Ezhikode, Savithri H.
Anilkumar, Hema
Arun, R.
Mathew, Blesson
Jithesh, V.
Bhattacharyya, Suman
Nedhath, Sneha
Cysil, T. B.
Muneer, S.
Kartha, Sreeja S.
S, Pramod Kumar
author_facet Ezhikode, Savithri H.
Anilkumar, Hema
Arun, R.
Mathew, Blesson
Jithesh, V.
Bhattacharyya, Suman
Nedhath, Sneha
Cysil, T. B.
Muneer, S.
Kartha, Sreeja S.
S, Pramod Kumar
contents Weak-line T Tauri stars (WTTS) exhibit X-ray flares, likely resulting from magnetic reconnection that heats the stellar plasma to very high temperatures. These flares are difficult to identify through targeted observations. Here, we report the serendipitous detection of the brightest X-ray flaring state of KM Ori in the eROSITA DR1 survey. Observations from SRG/eROSITA, Chandra X-ray Observatory, and XMM-Newton are analysed to assess the X-ray properties of KM Ori, thereby establishing its flaring state at the eROSITA epoch. The long-term (1999-2020) X-ray light curve generated for the Chandra observations confirmed that eROSITA captured the source at its highest X-ray flaring state recorded to date. Multi-instrument observations support the X-ray flaring state of the source, with time-averaged X-ray luminosity ($L_{0.2-5keV}$) reaching $\sim 1.9\times10^{32}{erg~s^{-1}}$ at the eROSITA epoch, marking it the brightest and possibly the longest flare observed to date. Such intense X-ray flares have been detected only in a few WTTS. The X-ray spectral analysis unveils the presence of multiple thermal plasma components at all epochs. The notably high luminosity ($L_{0.5-8~keV}\sim10^{32}{erg~s}^{-1}$), energy ($E_{0.5-8~keV}\sim10^{37}$erg), and the elevated emission measures of the thermal components in the eROSITA epoch indicate a superflare/megaflare state of KM Ori. Additionally, the H$α$ line equivalent width of $\sim$-5Åfrom our optical spectral analysis, combined with the lack of infrared excess in the spectral energy distribution, were used to re-confirm the WTTS (thin disk/disk-less) classification of the source. The long-duration flare of KM Ori observed by eROSITA indicates the possibility of a slow-rise top-flat flare. The detection demonstrates the potential of eROSITA to uncover such rare, transient events, thereby providing new insights into the X-ray activity of WTTS.
format Preprint
id arxiv_https___arxiv_org_abs_2410_16241
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Serendipitous detection of an intense X-ray flare in the weak-line T Tauri star KM Ori with SRG/eROSITA
Ezhikode, Savithri H.
Anilkumar, Hema
Arun, R.
Mathew, Blesson
Jithesh, V.
Bhattacharyya, Suman
Nedhath, Sneha
Cysil, T. B.
Muneer, S.
Kartha, Sreeja S.
S, Pramod Kumar
High Energy Astrophysical Phenomena
Weak-line T Tauri stars (WTTS) exhibit X-ray flares, likely resulting from magnetic reconnection that heats the stellar plasma to very high temperatures. These flares are difficult to identify through targeted observations. Here, we report the serendipitous detection of the brightest X-ray flaring state of KM Ori in the eROSITA DR1 survey. Observations from SRG/eROSITA, Chandra X-ray Observatory, and XMM-Newton are analysed to assess the X-ray properties of KM Ori, thereby establishing its flaring state at the eROSITA epoch. The long-term (1999-2020) X-ray light curve generated for the Chandra observations confirmed that eROSITA captured the source at its highest X-ray flaring state recorded to date. Multi-instrument observations support the X-ray flaring state of the source, with time-averaged X-ray luminosity ($L_{0.2-5keV}$) reaching $\sim 1.9\times10^{32}{erg~s^{-1}}$ at the eROSITA epoch, marking it the brightest and possibly the longest flare observed to date. Such intense X-ray flares have been detected only in a few WTTS. The X-ray spectral analysis unveils the presence of multiple thermal plasma components at all epochs. The notably high luminosity ($L_{0.5-8~keV}\sim10^{32}{erg~s}^{-1}$), energy ($E_{0.5-8~keV}\sim10^{37}$erg), and the elevated emission measures of the thermal components in the eROSITA epoch indicate a superflare/megaflare state of KM Ori. Additionally, the H$α$ line equivalent width of $\sim$-5Åfrom our optical spectral analysis, combined with the lack of infrared excess in the spectral energy distribution, were used to re-confirm the WTTS (thin disk/disk-less) classification of the source. The long-duration flare of KM Ori observed by eROSITA indicates the possibility of a slow-rise top-flat flare. The detection demonstrates the potential of eROSITA to uncover such rare, transient events, thereby providing new insights into the X-ray activity of WTTS.
title Serendipitous detection of an intense X-ray flare in the weak-line T Tauri star KM Ori with SRG/eROSITA
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2410.16241