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
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.