论文标题

在jansky非常大的阵列观察到的银河中心的无线电明亮区域中的紧凑型无线电变量和瞬变人群

A population of compact radio variables and transients in the radio bright zone at the Galactic center observed with the Jansky Very Large Array

论文作者

Zhao, Jun-Hui, Morris, Mark R., Goss, W. M.

论文摘要

使用2014年和2019年在多个时期的5.5 GHz的高分辨率观测值获得的JVLA数据,我们已经检测到银河系中心的无线电明亮区域中的无线电变量和瞬态群体。随着观测值涵盖了180 Arcmin $^2 $的天空面积,以0.4 ARCSEC的角度分辨率,我们报告了110个银河中心紧凑型无线电(GCCR)源的新检测,其大小为$ <1 $ Arcsec。 GCCR的通量密度超过70 $μ$ jy,至少有10 $σ$的意义。在这些来源中,82是可变或瞬态的,而28个不可变化。预计其中约有10%是外层次背景来源。我们讨论了检测到的来源的天体物理性质。与正常脉冲星(NPS)和毫秒脉冲星(MSP)的银河系盘(GD)群体相比,GCCR的大多数(80 \%)似乎落在脉冲星分布的高磁通密度尾巴之内,如从半乳酸磁盘中的NPS样品中溶解。但是,从GD人群中推断的MSP太弱了,无法对已检测到的GCCR人群做出重大贡献。我们还将GCCR与Chandra X射线目录中的X射线源交叉相关,发现42个GCCR具有候选X射线对应物。大多数具有X射线对应物的GCCR可能与未解决的或稍微分辨的无线电喷气机相关联,该射线是由带有紧凑物体的X射线二进制文件发射的,无论是黑洞还是中子星。

Using JVLA data obtained from high-resolution observations at 5.5 GHz at multiple epochs in 2014 and 2019, we have detected a population of radio variables and transients in the radio bright zone at the Galactic center. With observations covering a sky area of 180 arcmin$^2$ at an angular resolution of 0.4 arcsec, we report new detections of 110 Galactic center compact radio (GCCR) sources with a size of $<1$ arcsec. The flux densities of GCCRs exceed 70 $μ$Jy, with at least 10$σ$ significance. Among these sources, 82 are variable or transient and 28 are non-variable. About 10\% of them are expected to be extragalactic background sources. We discuss the possible astrophysical nature of the detected sources. As compared to the Galactic disk (GD) population of normal pulsars (NPs) and millisecond pulsars (MSPs), a majority (80\%) of the GCCRs appears to fall within the high flux-density tail of the pulsar distribution, as extrapolated from a sample of NPs in the Galactic disk. However, MSPs extrapolated from the GD population are too weak to have contributed significantly to the GCCR population that have been detected. We also cross-correlated the GCCRs with X-ray sources in Chandra X-ray catalogs and found that 42 GCCRs have candidate X-ray counterparts. Most of the GCCRs having X-ray counterparts are likely to be associated with unresolved or slightly resolved radio jets launched from X-ray binaries with a compact object, either a black hole or a neutron star.

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