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Feasibility Analysis of XSOLANTRA: A Mission Concept to Detect Exoplanets with an Array of CubeSats

机译:Xsolantra的可行性分析:用一系列小区分类检测Exoplanets的任务概念

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Seeking "nearby habitable worlds" was one of three science themes identified in the Astronomy Decadal Survey. Hundreds of extrasolar planets are known, but magnetic fields are likely required for these planets to be habitable. As of today, no direct constraints on the magnetic field characteristics of extrasolar planets exist. The ExtraSolar Observing Low-frequency Array of Nano Satellites for Radio Astronomy (XSOLANTRA), formerly known as XSOLARA is a feasibility study of a student designed, built, and tested micro-satellite mission to a Distant Retrograde Orbit (DRO) around Earth. XSOLANTRA will look at the Electron Cyclotron Maser Emission generated by the interaction between stellar wind and a planetary magneto sphere from which interior composition and atmospheric shielding can be inferred. The science instrument for XSOLANTRA is the entire array of fourteen CubeSats operating together as an interferometer. The fourteen CubeSats will be stacked on a SHuttle Expendable Rocket for Payload Augmentation (SHERPA) vehicle as a payload and will be deployed once arrived at DRO. A feasibility study was conducted to demonstrate that a CubeSat mission with cost of no more than $60 million is capable of detecting extrasolar planets. The study showed that a CubeSat mission within these constraints is possible; however, some questions still remain unanswered. This paper summarizes the mission concept starting from the science requirements, key mission design decisions, component level feasibility analysis and management and cost analysis
机译:寻求“附近的居住世界”是天文划分调查中发现的三个科学主题之一。已知数百个辐射行星,但这些行星可能需要磁场是可居住的。截至目前,在存在额外行星的磁场特征上没有直接限制。用于射频天文学(XSolantra)的纳米卫星的额外纳米卫星阵列是XSOLARA的可行性研究,该学生在地球周围的遥远逆行轨道(DRO)设计,构建和测试的微卫星使命。 Xsolantra将看通过恒星风和行星磁球之间的相互作用产生的电子回旋狂欢发射,从而可以推断出从中可以推断内部组成和大气屏蔽。 Xsolantra的科学仪器是整个十四块立方体阵列作为干涉仪操作。十四块立方体将堆叠在班车消耗火箭上,用于有效载荷增强(Sherpa)车辆作为有效载荷,并将部署曾经达到DRO。进行了可行性研究以证明具有不超过6000万美元的CubeSat使命能够检测到QuotraSolar行星。该研究表明,这些限制内的立方体使命是可能的;但是,有些问题仍然仍然没有答案。本文总结了从科学要求,关键任务设计决策,组成级可行性分析和管理和成本分析开始的使命概念

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