论文标题

磁场研究未来十年:EAO亚略列期货白皮书系列,2019年

Magnetic Fields Studies in the Next Decade: EAO Submillimetre Futures White Paper Series, 2019

论文作者

Furuya, Ray S., Pattle, Kate, Coudé, Simon, Ching, Tao-Chung, Mairs, Steve, Sadavoy, Sarah, Scicluna, Peter, Soam, Archana, Eswaraiah, Chakali, Safi-Harb, Samar

论文摘要

磁场在我们的宇宙中无处不在,但在许多天体物理学的分支中仍然很了解。推断天体物理磁场特性的关键工具是粉尘发射极化法。 James Clerk Maxwell望远镜(JCMT)正在计划使用7272个配对微波动力学电感探测器(MKIDS)组成的新型850 $ $ $ m摄像机,该摄像头将固有地获取线性极化信息。 The camera will allow wide-area polarization mapping of dust emission at 14$^{\prime\prime}$-resolution, allowing magnetic field properties to be studied in a wide range of environments, including all stages of the star formation process, Asymptotic Giant Branch stellar envelopes and planetary nebula, external galaxies including starburst galaxies and analogues for the Milky Way, and the environments of active galactic nuclei (AGN)。 AGN和Protostellar极化变异性的时域研究也将变得可行。星际培养基的极化特性的研究还将允许详细研究灰尘特性和物理学。这些调查将受益于潜在的未来升级,为相机增加450美元$ $ M的功能,这将允许在各种环境中推断光谱指数以进行两极分化的灰尘发射。新相机的增强映射速度和两极分化功能将把JCMT转换为真正的亚毫米偏振仪器,从而有可能改变我们对冷宇宙中磁场的理解的潜力。

Magnetic fields are ubiquitous in our Universe, but remain poorly understood in many branches of astrophysics. A key tool for inferring astrophysical magnetic field properties is dust emission polarimetry. The James Clerk Maxwell Telescope (JCMT) is planning a new 850$μ$m camera consisting of an array of 7272 paired Microwave Kinetic Inductance Detectors (MKIDs), which will inherently acquire linear polarization information. The camera will allow wide-area polarization mapping of dust emission at 14$^{\prime\prime}$-resolution, allowing magnetic field properties to be studied in a wide range of environments, including all stages of the star formation process, Asymptotic Giant Branch stellar envelopes and planetary nebula, external galaxies including starburst galaxies and analogues for the Milky Way, and the environments of active galactic nuclei (AGN). Time domain studies of AGN and protostellar polarization variability will also become practicable. Studies of the polarization properties of the interstellar medium will also allow detailed investigation of dust grain properties and physics. These investigations would benefit from a potential future upgrade adding 450$μ$m capability to the camera, which would allow inference of spectral indices for polarized dust emission in a range of environments. The enhanced mapping speed and polarization capabilities of the new camera will transform the JCMT into a true submillimetre polarization survey instrument, offering the potential to revolutionize our understanding of magnetic fields in the cold Universe.

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