论文标题
X射线极化检测与IXPE的Cassiopeia A
X-ray polarization detection of Cassiopeia A with IXPE
论文作者
论文摘要
我们报告了从超新星残留cassiopeia a的$ \ sim5σ$检测带有成像X射线极化探索器(IXPE)的偏振3-6 keV X射线发射。假设偏振矢量的圆形对称性,可以通过在大区域上求和来检测到$ 1.8 \ pm 0.3 $%的总体极化度。这些测量值表示$ \ sim 2.5 $%的同步加速器组件的平均极化度,而X射线同步器的前向震动区域接近5%。这些数字基于对热辐射和非热辐射贡献的评估,为此我们使用了基于Chandra X射线数据的详细空间谱模型。对极化的逐个像素搜索在$ \ sim3σ$置信水平下从离散区域提供了一些暂定检测。鉴于像素的数量,显着性是{}声称单个像素检测的不足,但意味着比角分辨率小的尺度上的湍流相当大。 CAS A的X射线连续体发射由$ \ lyssim 10^{17} $ cm的前向冲击和反向冲击的区域内的同步加速器辐射主导。我们发现i)测得的极化角对应于径向取向的磁场,类似于无线电观测值推断的磁场; ii)X射线极化度低于无线电频段($ \ sim 5 $%)。由于冲击压缩应施加切向磁场结构,因此IXPE结果暗示磁场在$ \ sim 10^{17} $ cm的冲击中被重新定位。如果磁场对齐是由于准平行冲击附近局部增强的加速度引起的,则首选的X射线极化角表明,对于具有径向磁场的单元,尺寸为$ 3 \ times 10^{16} $ cm。
We report on a $\sim 5σ$ detection of polarized 3-6 keV X-ray emission from the supernova remnant Cassiopeia A with the Imaging X-ray Polarimetry Explorer (IXPE). The overall polarization degree of $1.8 \pm 0.3$% is detected by summing over a large region, assuming circular symmetry for the polarization vectors. The measurements imply an average polarization degree for the synchrotron component of $\sim 2.5$%, and close to 5% for the X-ray synchrotron-domimated forward-shock region. These numbers are based on an assessment of the thermal and non-thermal radiation contributions, for which we used a detailed spatial-spectral model based on Chandra X-ray data. A pixel-by-pixel search for polarization provides a few tentative detections from discrete regions at the $\sim 3σ$ confidence level. Given the number of pixels, the significance is {insufficient} to claim a detection for individual pixels, but implies considerable turbulence on scales smaller than the angular resolution. Cas A's X-ray continuum emission is dominated by synchrotron radiation from regions within $\lesssim 10^{17}$ cm of the forward- and reverse shocks. We find that i) the measured polarization angle corresponds to a radially-oriented magnetic field, similar to what has been inferred from radio observations; ii) the X-ray polarization degree is lower than in the radio band ($\sim 5$%). Since shock compression should impose a tangential magnetic field structure, the IXPE results imply that magnetic-fields are reoriented within $\sim 10^{17}$cm of the shock. If the magnetic-field alignment is due to locally enhanced acceleration near quasi-parallel shocks, the preferred X-ray polarization angle suggests a size of $3\times 10^{16}$ cm for cells with radial magnetic fields.