School of Physics, University of Sydney, Sydney, NSW 2006, Australia.
Space Weather Services, Bureau of Meteorology, PO Box 1386, Sydney, NSW 1240, Australia.
Sci Rep. 2018 Jan 26;8(1):1676. doi: 10.1038/s41598-018-19195-3.
Type III solar radio bursts are the Sun's most intense and frequent nonthermal radio emissions. They involve two critical problems in astrophysics, plasma physics, and space physics: how collective processes produce nonthermal radiation and how magnetic reconnection occurs and changes magnetic energy into kinetic energy. Here magnetic reconnection events are identified definitively in Solar Dynamics Observatory UV-EUV data, with strong upward and downward pairs of jets, current sheets, and cusp-like geometries on top of time-varying magnetic loops, and strong outflows along pairs of open magnetic field lines. Type III bursts imaged by the Murchison Widefield Array and detected by the Learmonth radiospectrograph and STEREO B spacecraft are demonstrated to be in very good temporal and spatial coincidence with specific reconnection events and with bursts of X-rays detected by the RHESSI spacecraft. The reconnection sites are low, near heights of 5-10 Mm. These images and event timings provide the long-desired direct evidence that semi-relativistic electrons energized in magnetic reconnection regions produce type III radio bursts. Not all the observed reconnection events produce X-ray events or coronal or interplanetary type III bursts; thus different special conditions exist for electrons leaving reconnection regions to produce observable radio, EUV, UV, and X-ray bursts.
III 型太阳无线电爆发是太阳最强烈和最频繁的非热射电爆发。它们涉及天体物理学、等离子体物理学和空间物理学中的两个关键问题:集体过程如何产生非热辐射,以及磁重联是如何发生的,以及如何将磁能转化为动能。在这里,通过太阳动力学观测台的 UV-EUV 数据明确识别出了磁重联事件,具有强烈的向上和向下的喷流、电流片以及在时变磁环顶部的类尖顶几何形状,以及沿着成对的开放磁力线的强烈外流。通过默奇森宽场阵列成像并由利文斯通射电分光镜和 STEREO B 航天器探测到的 III 型爆发与特定的重联事件以及 RHESSI 航天器探测到的 X 射线爆发非常吻合。重联点较低,接近 5-10Mm 的高度。这些图像和事件时间提供了长期以来人们所期望的直接证据,即半相对论电子在磁重联区域中被加速产生了 III 型无线电爆发。并非所有观察到的重联事件都会产生 X 射线事件或日冕或行星际 III 型爆发;因此,电子离开重联区域产生可观测的无线电、EUV、UV 和 X 射线爆发存在不同的特殊条件。