Yokota Shoichiro
Department of Earth and Space Science, Graduate School of Science, Osaka University, 1-1 Machikaneyama-cho, Toyonaka 560-0043, Japan.
Mass Spectrom (Tokyo). 2018;7(2):S0076. doi: 10.5702/massspectrometry.S0076. Epub 2018 Sep 28.
Isotope analyses using mass spectrometers have been frequently utilized in the laboratories for the earth planetary science and other scientific and industrial fields. In order to conduct measurements of compositions and isotope ratios around planets and moons, mass spectrometers onboard spacecraft have also been developed. Ion and electron instruments on orbiters have provided much outputs for the space and planetary science since the early days and mass spectrometers on landers and rovers have recently performed isotope analyses on planetary bodies. We review spaceborne mass spectrometers, instrumentations, and observation results. Starting with spaceborne ion instruments to measure three distribution functions as well as mass for the space plasma physics, mass spectrometers have evolved to recent high-mass-resolution instruments for solar system exploration missions.
使用质谱仪的同位素分析在地球行星科学以及其他科学和工业领域的实验室中经常被采用。为了对行星和卫星周围的成分和同位素比率进行测量,还研发了搭载在航天器上的质谱仪。自早期以来,轨道飞行器上的离子和电子仪器为空间和行星科学提供了大量数据,而着陆器和漫游车上的质谱仪最近也在对行星体进行同位素分析。我们回顾了航天质谱仪、仪器设备以及观测结果。从用于测量空间等离子体物理的三种分布函数以及质量的航天离子仪器开始,质谱仪已经发展到用于太阳系探索任务的最新的高质量分辨率仪器。