论文标题
雷达横截面与光学幅度之间的关系,基于雷达和光流星的光学同时观察
Relationship between Radar Cross Section and Optical Magnitude based on Radar and Optical Simultaneous Observations of Faint Meteors
论文作者
论文摘要
对流星的雷达和光学同时观察对于了解星际尘埃的尺寸分布很重要。然而,高功率检测到的微弱的流星大孔雷达观测值通常像10磁磁相淡。在光学中,直到最近才在光学观测中检测到,这主要是由于光学观测值不足。在本文中,组织了两个雷达和光学同时观察。首次观察是在2009年至2010年进行的,使用中层和上层大气雷达(MU雷达)和图像强化的CCD摄像头。第二个观察结果是在2018年使用MU雷达和Mosaic CMOS摄像头Tomo-e Gozen进行的,该摄像头安装在1.05-M Kiso Schmidt望远镜上。总共检测到331个同时流星。雷达横截面与光波段幅度之间的关系通过线性函数很好地近似。从雷达横截面到V波段幅度的转换函数是散发流星的。转换功能应用于2009--2015在MU雷达检测到的大约15万个流星,其中很大一部分是零星的,并且在$ -1.5 $ -1.5 $ 9.5 $ $ 9.5 $的范围内得出了亮度函数。单个幂律函数的亮度函数很好地近似于$ r = 3.52 {\ pm} 0.12 $的总体索引。目前的观察表明,MU雷达具有$ 10^{ - 5} $至$ 10^{0} $ g的质量,以弥撒为流星。
Radar and optical simultaneous observations of meteors are important to understand the size distribution of the interplanetary dust. However, faint meteors detected by high power large aperture radar observations, which are typically as faint as 10 mag. in optical, have not been detected until recently in optical observations, mainly due to insufficient sensitivity of the optical observations. In this paper, two radar and optical simultaneous observations were organized. The first observation was carried out in 2009 to 2010 using Middle and Upper Atmosphere Radar (MU radar) and an image-intensified CCD camera. The second observation was carried out in 2018 using the MU radar and a mosaic CMOS camera, Tomo-e Gozen, mounted on the 1.05-m Kiso Schmidt Telescope. In total, 331 simultaneous meteors were detected. The relationship between radar cross sections and optical V-band magnitudes was well approximated by a linear function. A transformation function from the radar cross section to the V-band magnitude was derived for sporadic meteors. The transformation function was applied to about 150,000 meteors detected by the MU radar in 2009--2015, large part of which are sporadic, and a luminosity function was derived in the magnitude range of $-1.5$ to $9.5$ mag. The luminosity function was well approximated by a single power-law function with the population index of $r = 3.52{\pm}0.12$. The present observation indicates that the MU radar has capability to detect interplanetary dust of $10^{-5}$ to $10^{0}$ g in mass as meteors.