首页> 外文会议>Second European Workshop on Exo-Astrobiology Sep 16-19, 2002 Graz, Austria >REMOTE SENSING OF CIRCULARLY POLARIZED LIGHT FROM ORBIT OF PLANET MERCURY BY THE ESA MISSION BEPICOLOMBO
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REMOTE SENSING OF CIRCULARLY POLARIZED LIGHT FROM ORBIT OF PLANET MERCURY BY THE ESA MISSION BEPICOLOMBO

机译:ESA任务BEPICOLOMBO对来自行星汞轨道的圆偏振光的遥感

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摘要

Circularly polarized electromagnetic radiation can be measured with earth based telescopes in galaxies, stars, the interstellar medium, and planets. The observed values for Venus, Moon, Mars, and Jupiter obtained by photo-polarimetric measurements were 'symmetric' and showed accordance with theory. However, for planet Mercury asymmetric parameters in the circular polarization were measured that do not fit with calculations. For BepiColombo, the ESA cornerstone mission 5 to Mercury, we propose to investigate this phenomenon using a concept which includes two instruments. The first instrument is a high-resolution optical polarimeter, capable to determine and map the circular polarization by remote scanning of Mercury's surface from the Mercury Planetary Orbiter MPO. The second instrument is an in situ sensor for the detection of the enantiomorphism of surface crystals and minerals, proposed to be included in the Mercury Surface Lander MSE. With this combination of instruments we hope to supply crucial information on the origin of biomolecular asymmetry. The required instrumentation will be presented and discussed.
机译:圆极化电磁辐射可用星系,恒星,星际介质和行星中的地球望远镜测量。通过光偏振测量获得的金星,月球,火星和木星的观测值是“对称的”,并且符合理论。但是,对于水星来说,测量的圆极化不对称参数与计算不符。对于BepiColombo,这是ESA对Mercury的基石任务5,我们建议使用一种包括两个工具的概念来研究这种现象。第一个仪器是高分辨率光学旋光仪,能够通过从水星行星轨道MPO远程扫描水星表面来确定和绘制圆偏振。第二种仪器是用于检测表面晶体和矿物对映体的原位传感器,建议将其包含在Mercury Surface Lander MSE中。通过这些工具的组合,我们希望提供有关生物分子不对称性起源的关键信息。将介绍和讨论所需的仪器。

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