Exploring Be phenomena in OBA stars: a Mid-infrared search
Mingjie Jian, Noriyuki Matsunaga, Biwei Jiang, Haibo Yuan, Ruoyi Zhang

TL;DR
This study systematically identified Be phenomena in OBA stars using mid-infrared data, revealing 916 stars with disk activity, many newly discovered, and providing insights into their variability and disk evolution.
Contribution
It introduces a novel infrared photometric method to detect and analyze Be phenomena in a large stellar sample, expanding the known population and understanding of disk dynamics.
Findings
916 OBA stars show Be phenomena, 736 are new discoveries.
Brightness and colour variations are correlated, indicating common disk processes.
Median disk build-up and decay durations are around 474 and 524 days.
Abstract
As early-type stars with a rotation speed close to their critical velocity, Be stars experience an event called the Be phenomenon. The material in their equator is ejected into outside space during the Be phenomenon and forms a circumstellar disk. The mechanism triggering these events remains poorly understood, and observations of these events are limited because the duration of these events ranges from months to years. Long-term epoch photometry in the infrared bands is expected to be ideal for detecting Be phenomena because the brightness variation is larger, and the effect of interstellar extinction is weaker as well. We conducted a systematic search for Be phenomena among Milky Way OBA stars in the mid-infrared. We examined the brightness and colour variations of known classical Be stars using the WISE W1 and W2 photometry bands to quantify their characteristics. Subsequently, we…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Spectroscopy and Laser Applications
