论文标题
用非常大的阵列解决M32的核无线电排放
Resolving the Nuclear Radio Emission from M32 with Very Large Array
论文作者
论文摘要
当地组矮椭圆形的银河系M32拥有有史以来最接近和最不足的超级质量黑洞(SMBHS)之一,这为研究最静态状态的SMBH的物理学提供了难得的机会。最近的非常大的阵列(VLA)观察结果已检测到M32核的无线电源,该源被认为是SMBH的无线电对应物。为了进一步研究该核源的无线电特性,我们在2015---2017之间的四个时期进行了后续的高分辨率VLA观测,每个观察结果都有双重频率。在6 GHz时,核源在$ \ sim $ 0 \ farcs4的角度分辨率下解决,表现出无牙,略微偏斜的形态,可检测的范围为$ \ sim $ 2.5 \ arcsec($ \ sim $ 10 $ 10 parsec)。在四个时期之间找不到明显的可变性。在15 GHz时,在同一区域内无法检测到明显的发射,指出陡峭的固有无线电光谱(光谱指数的3 \,$σ$上限为-1.46)。我们讨论了这种核源本质的可能场景,并得出结论,即恒星起源,尤其是行星星云,X射线二进制文件,超新星残留物或由大型恒星提供动力的弥漫性电离气体,可以被淘汰,可以通过Synchrotron Radiation从Synchrotrot radiation frof tefothectional willed驱动器来解释观察到的无线电特性。
The Local Group dwarf elliptical galaxy M32 hosts one of the nearest and most under-luminous super-massive black holes (SMBHs) ever known, offering a rare opportunity to study the physics of accreting SMBHs at the most quiescent state. Recent Very Large Array (VLA) observations have detected a radio source at the nucleus of M32, which is suggested to be the radio counterpart of the SMBH. To further investigate the radio properties of this nuclear source, we have conducted follow-up, high-resolution VLA observations in four epochs between 2015--2017, each with dual frequencies. At 6 GHz, the nuclear source is resolved under an angular resolution of $\sim$0\farcs4, exhibiting a coreless, slightly lopsided morphology with a detectable extent of $\sim$2.5 \arcsec ($\sim$10 parsec). No significant variability can be found among the four epochs. At 15 GHz, no significant emission can be detected within the same region, pointing to a steep intrinsic radio spectrum (with a 3\,$σ$ upper limit of -1.46 for the spectral index). We discuss possible scenarios for the nature of this nuclear source and conclude that a stellar origin, in particular planetary nebulae, X-ray binaries, supernova remnants or diffuse ionized gas powered by massive stars, can be ruled out.Instead, the observed radio properties can be explained by synchrotron radiation from a hypothetical wind driven by the weakly accreting SMBH.