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Design and demonstration of the Mars Organic Molecule Analyzer (MOMA) on the ExoMars 2018 rover

机译:在ExoMars 2018流动站上设计和演示火星有机分子分析仪(MOMA)

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The Mars Organic Molecule Analyzer (MOMA) investigation is a key astrobiology experiment scheduled to launch on the joint ESA-Roscosmos ExoMars 2018 rover mission. MOMA will examine the chemical composition of geological samples acquired from depths of up to two meters below the martian surface, where fragile organic molecules may be protected from destructive cosmic radiation and/or oxidative chemical reactions. The heart of the MOMA mass spectrometer subsystem (i.e., MOMA-MS) is a miniaturized linear ion trap (LIT) that supports two distinct modes of operation to detect: i) volatile and semi-volatile, low-to-moderate mass organics (≤500 Da) via pyrolysis coupled with gas chromatography mass spectrometry (pyr/GCMS); and, ii) more refractory, moderate-to-high mass compounds (up to 1000 Da) via laser desorption (LDMS) at ambient Mars pressures. Additionally, the LIT mass analyzer enables selective ion trapping via multi-frequency waveform ion excitation (e.g., stored waveform inverse Fourier transform, or SWIFT), and structural characterization of complex molecules using tandem mass spectrometry (MS/MS). A high-fidelity Engineering Test Unit (ETU) of MOMA-MS, including the LIT subassembly, dual-gun electron ionization source, micropirani pressure gauge, solenoid-driven aperture valve, redundant detection chains, and control electronics, has been built and tested at NASA GSFC under relevant operational conditions (pressure, temperature, etc.). Spaceflight qualifications of individual hardware components and integrated subassemblies have been validated through vibration, shock, thermal, lifetime, and performance evaluations. The ETU serves as a pathfinder for the flight model buildup, integration and test, as the ETU meets the form, fit and function of the flight unit that will be delivered to MPS in late 2015. To date, the ETU of MOMA-MS has been shown to meet or exceed all functional requirements, including mass range, resolution, accuracy, instrumental drif- , and limit-of-detection specifications, thereby enabling the primary science objectives of the MOMA investigation and ExoMars 2018 mission.
机译:火星有机分子分析仪(MOMA)研究是一项重要的天体生物学实验,计划在ESA-Roscosmos ExoMars 2018漫游者联合任务上启动。 MOMA将检查从火星表面以下两米深处获取的地质样品的化学组成,在其中可保护易碎的有机分子免受破坏性宇宙辐射和/或氧化化学反应的影响。 MOMA质谱仪子系统(即MOMA-MS)的心脏是一个小型的线性离子阱(LIT),它支持两种不同的操作模式来检测:i)挥发性和半挥发性,低至中等质量的有机物( ≤500 Da)通过热解结合气相色谱质谱法(pyr / GCMS); ii)在环境火星压力下通过激光解吸(LDMS)获得更多难熔,中等至高质量的化合物(最高1000 Da)。此外,LIT质谱仪可通过多频波形离子激发(例如存储的波形逆傅立叶变换或SWIFT)进行选择性离子捕获,并使用串联质谱(MS / MS)对复杂分子进行结构表征。已建立并测试了MOMA-MS的高保真工程测试单元(ETU),包括LIT组件,双枪电子电离源,微皮拉尼压力表,电磁驱动的孔径阀,冗余检测链和控制电子设备。在NASA GSFC的相关操作条件下(压力,温度等)。单个硬件组件和集成子组件的航天认证已经通过振动,冲击,散热,寿命和性能评估得到验证。由于ETU符合将在2015年下半年交付给MPS的飞行单元的形式,装配和功能,因此ETU可以作为建立,集成和测试飞行模型的开路者。迄今为止,MOMA-MS的ETU已具备已证明达到或超过了所有功能要求,包括质量范围,分辨率,准确性,仪器漂移和检测限规格,从而实现了MOMA调查和ExoMars 2018任务的主要科学目标。

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