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Modeled Martian subsurface elemental composition measurements with the Probing In situ with Neutron and Gamma ray instrument

机译:用中子和伽马射线仪进行原位探测,模拟火星地下元素组成的测量

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The Probing In situ with Neutron and Gamma ray (PING) instrument is an innovative application of active neutron?¢????induced gamma ray technology. The objective of PING is to measure the elemental composition of the Martian regolith. This manuscript presents PING's sensitivities as a function of the Martian regolith depth and PING's uncertainties in the measurements as a function of observation time in passive and active mode. The modeled sensitivities show that in PING's active mode, where both a pulsed neutron generator (PNG) and a gamma ray spectrometer (GRS) are used, PING can interrogate the material below the rover to about 20?¢????cm due to the penetrating nature of the high?¢????energy neutrons and the resulting secondary gamma rays observed with the GRS. PING is capable of identifying most major and minor rock?¢????forming elements, including H, O, Na, Mn, Mg, Al, Si, P, S, Cl, Cr, K, Ca, Ti, Fe, and Th. The modeled uncertainties show that PING's use of a PNG reduces the required observation times by an order of magnitude over a passive operating mode where the PNG is turned off. While the active mode allows for more complete elemental inventories with higher sensitivity, the gamma ray signatures of some elements are strong enough to detect in passive mode. We show that PING can detect changes in key marker elements and make thermal neutron measurements in about 1?¢????min that are sensitive to H and Cl.
机译:用中子和伽马射线(PING)仪器进行原位探测是有源中子感应伽马射线技术的创新应用。 PING的目的是测量火星长石的元素组成。该手稿介绍了PING的敏感度与火星重石深度的关系,而PING在测量中的不确定性与被动和主动模式下的观测时间有关。建模的灵敏度表明,在PING的活动模式下,同时使用脉冲中子发生器(PNG)和伽马射线能谱仪(GRS),PING可以将流动站下方的物质探查到大约20?cm?cm,这是由于用GRS观察到的高能中子的穿透性质以及由此产生的二次伽马射线。 PING能够识别大多数主要和次要岩石形成元素,包括H,O,Na,Mn,Mg,Al,Si,P,S,Cl,Cr,K,Ca,Ti,Fe,和Th。建模的不确定性表明,在PNG关闭的被动运行模式下,PING使用PNG可以将所需的观察时间减少一个数量级。主动模式可以以更高的灵敏度提供更完整的元素清单,而某些元素的伽玛射线签名足够强大,可以在被动模式下进行检测。我们表明,PING可以检测关键标记元素的变化,并在大约1?≤???? min内对H和Cl敏感地进行热中子测量。

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