论文标题

从2015-11-15到2016-01-15对MSL/RAD对中性粒子光谱的测量

Measurements of the neutral particle spectra on Mars by MSL/RAD from 2015-11-15 to 2016-01-15

论文作者

Guo, Jingnan, Zeitlin, Cary, Wimmer-Schweingruber, Robert, Hassler, Donald M., Koehler, Jan, Ehresmann, Bent, Boettcher, Stephan, Boehm, Eckart, Brinza, David E.

论文摘要

The Radiation Assessment Detector (RAD), onboard the Mars Science Laboratory (MSL) rover Curiosity, has been measuring the energetic charged and neutral particles and the radiation dose rate on the surface of Mars since the landing of the rover in August 2012. In contrast to charged particles, neutral particles (neutrons and gamma-rays) are measured indirectly: the energy deposition spectra produced by neutral particles are complex探测器响应功能的入射颗粒光谱的卷积。已经开发了一种反转技术,并应用于共同展开在两个不同类型的闪烁体(用于高伽马检测效率的CSI)中测量的沉积能光谱,以及中子的塑料)以获得中子和伽马射线光谱。该结果对于确定由中子贡献的火星表面辐射的生物学影响很重要,中子与带电颗粒不同的材料相互作用。这些在火星上的第一原地测量值提供了(1)评估与红色行星未来的载人任务的辐射相关健康风险的重要参考,以及(2)实验输入,用于验证用于模拟飞船内或行星表面上的粒子传输代码的实验输入。在这里,我们提出了中性粒子光谱以及在一个时期(2015年11月15日至2016年1月15日)中从RAD测量中得出的相应剂量和剂量等效速率,通过不同的传输模型对表面粒子光谱进行了模拟。

The Radiation Assessment Detector (RAD), onboard the Mars Science Laboratory (MSL) rover Curiosity, has been measuring the energetic charged and neutral particles and the radiation dose rate on the surface of Mars since the landing of the rover in August 2012. In contrast to charged particles, neutral particles (neutrons and gamma-rays) are measured indirectly: the energy deposition spectra produced by neutral particles are complex convolutions of the incident particle spectra with the detector response functions. An inversion technique has been developed and applied to jointly unfold the deposited energy spectra measured in two scintillators of different types (CsI for high gamma detection efficiency, and plastic for neutrons) to obtain the neutron and gamma-ray spectra. This result is important for determining the biological impact of the Martian surface radiation contributed by neutrons, which interact with materials differently from the charged particles. These first in-situ measurements on Mars provide (1) an important reference for assessing the radiation-associated health risks for future manned missions to the red planet and (2) an experimental input for validating the particle transport codes used to model the radiation environments within spacecraft or on the surface of planets. Here we present neutral particle spectra as well as the corresponding dose and dose equivalent rates derived from RAD measurement during a period (November 15, 2015 to January 15, 2016) for which the surface particle spectra have been simulated via different transport models.

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