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An ultraviolet simulator for the incident Martian surface radiation and its applications

机译:事件火星表面辐射及其应用的紫外模拟器

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摘要

Ultraviolet (UV) radiation can act on putative organic/biological matter at the Martian surface in several ways. Only absorbed, but not transmitted or reflected, radiation energy can be photo-chemically effective. The most important biological UV effects are due to photochemical reactions in nucleic acids, DNA or RNA, which constitute the genetic material of all cellular organisms and viruses. Protein or lipid effects generally play a minor role, but they are also relevant in some cases. UV radiation can induce wavelengths-specific types of DNA damage. At the same time it can also induce the photo-reversion reaction of a UV induced DNA photoproduct of nucleic acid bases, the pyrimidine dimers. Intense UVB and UVC radiation, experienced on early Earth and present-day Mars, has been revealed to be harmful to all organisms, including extremophile bacteria and spores. Moreover, the formation of oxidants, catalytically produced in the Martian environment through UV irradiation, may be responsible for the destruction of organic matter on Mars. Following this, more laboratory simulations are vital in order to investigate and understand UV effects on organic matter in the case of Mars. We have designed a radiation apparatus that simulates the anticipated Martian UV surface spectrum between 200 and 400 nm (UVC-UVA). The system comprises a UV enhanced xenon arc lamp, special filter-sets and mirrors to simulate the effects of the Martian atmospheric column and dust loading. We describe the technical setup and performance of the system and discuss its uses for different applications. The design is focused on portability, therefore, the Mars-UV simulator represents a device for several different Mars simulation facilities with specific emphasis on Mars research topics.
机译:紫外线(UV)可以多种方式作用于火星表面的假定有机/生物物质。仅吸收而不是透射或反射的辐射能量可以是光化学有效的。最重要的生物紫外线效应是由于核酸,DNA或RNA中的光化学反应所致,而光化学反应构成了所有细胞生物和病毒的遗传物质。蛋白质或脂质的作用通常起着较小的作用,但在某些情况下它们也具有相关性。紫外线可以引起特定波长的DNA损伤。同时,它还可以诱导紫外线诱导的核酸碱基嘧啶二聚体的DNA光产物的光还原反应。在地球早期和当今的火星上,强烈的UVB和UVC辐射被发现对所有生物均有害,包括极端微生物和孢子。此外,在火星环境中通过紫外线辐射催化产生的氧化剂的形成可能是对火星上有机物的破坏的原因。在此之后,更多的实验室模拟对于调查和了解火星对有机物的紫外线影响至关重要。我们设计了一种辐射装置,可以模拟200至400 nm之间预期的火星紫外线表面光谱(UVC-UVA)。该系统包括一个紫外线增强型氙弧灯,特殊的滤光片组和反射镜,以模拟火星大气柱和粉尘负荷的影响。我们描述了系统的技术设置和性能,并讨论了其在不同应用中的用途。设计侧重于便携性,因此,Mars-UV仿真器代表了几种不同的Mars仿真设施的设备,并特别着重于Mars研究主题。

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