Discovery of a new phase-transient cyclotron line in A0535+26: Constraints on the accretion geometry

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Main Authors: Devaraj, Ashwin, Paul, Biswajit, Bhalerao, Varun, Mukherjee, Dipanjan
Format: Preprint
Published: 2025
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author Devaraj, Ashwin
Paul, Biswajit
Bhalerao, Varun
Mukherjee, Dipanjan
author_facet Devaraj, Ashwin
Paul, Biswajit
Bhalerao, Varun
Mukherjee, Dipanjan
contents In November 2020, A0535+26 underwent one of its brightest outbursts, reaching nearly 12 Crab in X-ray flux. Observed by \textit{Insight-HXMT}, \textit{NuSTAR}, \textit{NICER}, and \textit{AstroSat}, this event provided valuable insights into Be/X-ray binaries. The pulse profiles evolved significantly with luminosity, transitioning from pencil-beam to fan-beam geometries. A0535+26, known for its fundamental cyclotron line at $\sim$44 keV, became only the second source to exhibit a negative correlation between cyclotron line energy and flux at high luminosities, with a plateau phase preceding the transition from positive to negative correlation. We report the discovery of a phase-transient low-energy cyclotron line, detected in a narrow phase range ($\sim$16\%) across all seven \textit{NuSTAR} observations during the rising, peak, and declining phases of the outburst. The new line exhibited dramatic variations with pulse phase and luminosity. We explain this behavior using an accretion geometry where the accretion column sweeps across the line of sight.
format Preprint
id arxiv_https___arxiv_org_abs_2501_15537
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Discovery of a new phase-transient cyclotron line in A0535+26: Constraints on the accretion geometry
Devaraj, Ashwin
Paul, Biswajit
Bhalerao, Varun
Mukherjee, Dipanjan
High Energy Astrophysical Phenomena
In November 2020, A0535+26 underwent one of its brightest outbursts, reaching nearly 12 Crab in X-ray flux. Observed by \textit{Insight-HXMT}, \textit{NuSTAR}, \textit{NICER}, and \textit{AstroSat}, this event provided valuable insights into Be/X-ray binaries. The pulse profiles evolved significantly with luminosity, transitioning from pencil-beam to fan-beam geometries. A0535+26, known for its fundamental cyclotron line at $\sim$44 keV, became only the second source to exhibit a negative correlation between cyclotron line energy and flux at high luminosities, with a plateau phase preceding the transition from positive to negative correlation. We report the discovery of a phase-transient low-energy cyclotron line, detected in a narrow phase range ($\sim$16\%) across all seven \textit{NuSTAR} observations during the rising, peak, and declining phases of the outburst. The new line exhibited dramatic variations with pulse phase and luminosity. We explain this behavior using an accretion geometry where the accretion column sweeps across the line of sight.
title Discovery of a new phase-transient cyclotron line in A0535+26: Constraints on the accretion geometry
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2501.15537