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首页> 外文期刊>Applied optics >Polarization neutral point pairs of the solar corona and the lunar disc observed during the total solar eclipse on 11 August 1999 in Hungary
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Polarization neutral point pairs of the solar corona and the lunar disc observed during the total solar eclipse on 11 August 1999 in Hungary

机译:20199年8月11日在匈牙利的日常食数期间观察到太阳能电晕和月球光盘的极化中性点对

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摘要

During the total solar eclipses on 11 August 1999 in Kecel (Hungary) and on 29 March 2006 in Side (Turkey), two Hungarian groups performed full-sky imaging polarimetric measurements of the eclipsed sky. They observed the spatiotemporal change of the celestial polarization pattern and detected three polarization neutral points as well as two points with maximal polarization of the sky. Parallel to these studies, the polarization pattern in front of the lunar disc, the solar corona, and the surrounding sky have also been measured. During the total solar eclipse on 21 August 2017 in the USA (Rexburg-Idaho, Madras-Oregon), three American/international groups have measured the polarization characteristics of the full sky and the solar corona. The first group observed the spatiotemporal variation of the celestial polarization pattern, and the second group detected three polarization neutral points of the sky and observed two neutral points of the solar corona. The latter were named as Minnaert and van de Hulst neutral points. The third group observed two neutral points of the lunar disc. We have reanalyzed the earlier polarization patterns of the lunar disc, solar corona, and the surrounding sky measured during the Hungarian total eclipse on 11 August 1999. In these reanalyzed polarization patterns, all four neutral points observed during the eclipse on 21 August 2017 in the USA occur: the Minnaert/van de Hulst neutral point pair above/below the eclipsed Sun, where coronal polarization is canceled by sky polarization, and the northern and southern (unnamed) neutral points of the lunar disc, where the directions of polarization of coronal light and foreground skylight are perpendicular to each other with the same polarized intensity. We name the latter two polarization neutral points after Coulson andVorobiev. (C) 2021 Optical Society of America.
机译:1999年8月11日在凯塞尔(匈牙利)和2006年3月29日在塞德(土耳其)的日全食期间,两个匈牙利小组对日全食天空进行了全天成像偏振测量。他们观察了天体偏振模式的时空变化,探测到了三个极化中性点以及两个天空极化最大的点。在进行这些研究的同时,还测量了月盘、日冕和周围天空前面的偏振模式。在2017年8月21日美国(爱达荷州雷克斯堡、俄勒冈州马德拉斯)的日全食期间,三个美国/国际团体测量了全天和日冕的偏振特性。第一组观测到了天体极化模式的时空变化,第二组探测到了天空的三个极化中性点,并观测到了日冕的两个中性点。后者被命名为Minnaert和van de Hulst中性点。第三组观察了月球圆盘的两个中性点。我们重新分析了1999年8月11日匈牙利日全食期间测得的月盘、日冕和周围天空的早期偏振模式。在这些重新分析的极化模式中,2017年8月21日日食期间在美国观测到的所有四个中性点都出现了:日食上方/下方的明奈尔特/范德赫斯特中性点对,日冕极化被天空极化抵消,以及月盘的北部和南部(未命名)中性点,其中,日冕光和前景天光的偏振方向相互垂直,偏振强度相同。我们以库尔森和沃罗比耶夫的名字命名后两个极化中性点。(2021)美国光学学会。

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  • 来源
    《Applied optics》 |2021年第13期|共8页
  • 作者单位

    Eotvos Lorand Univ Dept Biol Phys Environm Opt Lab Pazmany Setany 1 H-1117 Budapest Hungary;

    Eotvos Lorand Univ Dept Biol Phys Environm Opt Lab Pazmany Setany 1 H-1117 Budapest Hungary;

    Eotvos Lorand Univ Dept Biol Phys Environm Opt Lab Pazmany Setany 1 H-1117 Budapest Hungary;

    Eotvos Lorand Univ Biol Inst Grp Methodol Biol Teaching Pazmany Satany 1 H-1117 Budapest Hungary;

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