论文标题

附近恒星的高精度极化法(D <50 PC)绘制了当地气泡内的星际灰尘和磁场

High-precision polarimetry of nearby stars (d<50 pc) Mapping the interstellar dust and magnetic field inside the Local Bubble

论文作者

Piirola, V., Berdyugin, A., Frisch, P. C., Kagitani, M., Sakanoi, T., Berdyugina, S., Cole, A. A., Harlingten, C., Hill, K.

论文摘要

我们研究了由磁场在太阳街中对齐的星际尘埃产生的线性极化(d <50 pc)。我们还寻找偶色过程中的内在影响,特别是在极化变异性和波长依赖性方面。我们旨在检测和绘制尘埃云,从而导致穿过云的星光的统计学上显着的极化,并从观察到的极化的位置角度确定星际磁场方向。高精度的宽带(BVR)极化观测值是在4-9范围内的光谱ft到G中的361颗恒星制成的,在4-9的范围内,检测敏感性在或优于10e-5(0.001%)的水平或更好。在115颗恒星中发现了具有统计学意义(> 3 sigma)极化,在178颗恒星中> 2 sigma检测,在总样品中,在361颗恒星的总样品中。基于这些数据的极化图显示了与地球层几何形状,附近云的运动学以及星际边界资源Explorer(IBEX)功能区磁场有关的极化位置角度的丝状图案。从长期的多次观察结果中,恒星的数量(18)显示了10E-5水平上内在变异性的证据。这可以归因于偶尔效应(例如碎片盘和色球活性)。 Star HD 101805显示出特殊的波长依赖性,表明散射颗粒的尺寸分布与典型的星介质不同。

We investigate the linear polarization produced by interstellar dust aligned by the magnetic field in the solar neighborhood (d< 50 pc). We also look for intrinsic effects from circumstellar processes, specifically in terms of polarization variability and wavelength dependence. We aim to detect and map dust clouds which give rise to statistically significant amounts of polarization of the starlight passing through the cloud, and to determine the interstellar magnetic field direction from the position angle of the observed polarization. High-precision broad-band (BVR) polarization observations are made of 361 stars in spectral classes F to G, in the magnitude range 4-9, with detection sensitivity at the level of or better than 10E-5 (0.001 %). Statistically significant (>3 sigma) polarization is found in 115 stars, and > 2 sigma detection in 178 stars, out of the total sample of 361 stars. Polarization maps based on these data show filament-like patterns of polarization position angles which are related to both the heliosphere geometry, the kinematics of nearby clouds, and the Interstellar Boundary EXplorer (IBEX) ribbon magnetic field. From long-term multiple observations, a number (18) of stars show evidence of intrinsic variability at the 10E-5 level. This can be attributed to circumstellar effects (e.g., debris disks and chromospheric activity). The star HD 101805 shows a peculiar wavelength dependence, indicating size distribution of scattering particles different from that of a typical interstellar medium.

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