论文标题

发现与Be Star Ly CMA相关的新超级X射线X射线瞬态Maxi J0709-159

Discovery of a new supergiant fast X-ray transient MAXI J0709-159 associated with the Be star LY CMa

论文作者

Sugizaki, Mutsumi, Mihara, Tatehiro, Kobayashi, Kohei, Negoro, Hitoshi, Shidatsu, Megumi, Pike, Sean N., Iwakiri, Wataru, Urabe, Sota, Serino, Motoko, Kawai, Nobuyuki, Nakajima, Motoki, Kennea, Jamie A., Liu, Zhu

论文摘要

我们报告了新的超级快速X射线瞬态(SFXT),Maxi J0709 $ - $ 159的发现,以及与LY CMA的识别(也称为HD 54786)。 1月25日,2022年,由All-Sky X射线图像(Maxi)检测到了一个名为Maxi J0709 $ - $ 159的新的X射线对象。在$ \ sim 3 $ 3 $小时的两次扫描中观察到了两个耀斑的活动,其中2-10 Kev Flux达到$ 5 \ times 10^{ - 9} $ erg cm $ $^{ - 2} $ s $ s $^{ - 1} $。在此期间,来源表现出很大的光谱变化,表明吸收柱密度$ n_ \ mathrm {h} $从$ 10^{22} $ cm $^{ - 2} $增加到$ 10^{23} $ cm $ $^{ - 2} $。 NUSTAR后续观察1月29日确定了一个新的X射线源,其通量为$ 6 \ times 10^{ - 13} $ erg cm $^{ - 2} $ s $ s $ s $^{ - 1} $,与LY CMA一致,该位置一致,该位置已被确定为B SuperGiant和Star&Star&Star及其位于3 KPC距离。观察到的X射线活动的特点是短($ \ lyssim $数小时)持续时间,快速($ \ lyssim $几秒钟)的变化伴随着频谱变化,以及较大的发光度($ 10^{32} $ - $ 10^{37} {37} $ erg s $^s $^{ - 1} $^{ - 1} $与Sf sftt。另一方面,LY CMA的光谱观察结果揭示了一条宽阔的$Hα$发射线,这可能表明存在构图。这些获得的结果表明,光学伴侣ly cma当然具有复杂的室内介质,包括密集的团块。

We report on the discovery of a new supergiant fast X-ray transient (SFXT), MAXI J0709$-$159, and its identification with LY CMa (also known as HD 54786). On 2022 January 25, a new flaring X-ray object named MAXI J0709$-$159, was detected by Monitor of All-sky X-ray Image (MAXI). Two flaring activities were observed in the two scans of $\sim 3$ hours apart, where the 2-10 keV flux reached $5\times 10^{-9}$ erg cm$^{-2}$ s$^{-1}$. During the period, the source exhibited a large spectral change suggesting that the absorption column density $N_\mathrm{H}$ increased from $10^{22}$ cm$^{-2}$ to $10^{23}$ cm$^{-2}$. NuSTAR follow-up observation on January 29 identified a new X-ray source with a flux of $6\times 10^{-13}$ erg cm$^{-2}$ s$^{-1}$ at the position consistent with LY CMa, which has been identified as B supergiant as well as Be star, located at the 3 kpc distance. The observed X-ray activity characterized by the short ($\lesssim$ several hours) duration, the rapid ($\lesssim$ a few seconds) variabilities accompanied with spectral changes, and the large luminosity swing ($10^{32}$-$10^{37}$ erg s$^{-1}$) agree with those of SFXT. On the other hand, optical spectroscopic observations of LY CMa revealed a broad $Hα$ emission line, which may indicate the existence of a Be circumstellar disk. These obtained results suggest that the optical companion, LY CMa, certainly has a complex circumstellar medium including dense clumps.

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