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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Detectability of thermal signatures associated with active formation of 'chaos terrain' on Europa
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Detectability of thermal signatures associated with active formation of 'chaos terrain' on Europa

机译:与欧罗巴上“混乱地形”的活跃形成相关的热信号的可检测性

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A recent study by Schmidt et al. (2011) suggests that Thera Macula, one of the "chaos regions" on Europa, may be actively forming over a large liquid water lens. Such a process could conceivably produce a thermal anomaly detectable by a future Europa orbiter or flyby mission, allowing for a direct verification of this finding. Here, we present a set of models that quantitatively assess the surface and subsurface temperatures associated with an actively resurfacing chaos region using constraints from Thera Macula. The results of this numerical study suggest that the surface temperature over an active chaos region can be as high as ~200K. However, low-resolution Galileo Photo-Polarimeter Radiometer (PPR) observations indicate temperatures below 120 K over Thera Macula. This suggests that Thera Macula is not currently active unless an insulating layer of at least a few centimeters in thickness is present, or activity is confined to small regions, reducing the overall intensity of the thermal signature. Alternatively, Thera may have been cooling for at least 10-100 yr and still contain a subsurface lake, which can take ~300,000 yr to crystallize. According to the present study, a more sensitive instrument capable of detecting anomalies ~5 K above ambient could detect activity at Thera Macula even if an insulating layer of ~50 cm is present.
机译:Schmidt等人的最新研究。 (2011年)表明,塞拉·马库拉(Thera Macula)是欧罗巴地区的“混乱地区”之一,可能正在一个大型液态水透镜上积极形成。可以想象,这样的过程可能会导致未来的欧罗巴轨道飞行器或飞越飞行任务探测到的热异常,从而可以直接验证这一发现。在这里,我们介绍了一组模型,这些模型使用Thera Macula的约束条件来定量评估与主动重铺混沌区域相关的表面和地下温度。数值研究的结果表明,活跃的混沌区域的表面温度可能高达200K。但是,低分辨率伽利略光度计辐射计(PPR)的观测结果表明,Thera Macula上的温度低于120K。这表明,除非存在至少几厘米厚的绝缘层,或者活动仅限于小区域,从而降低热信号的总体强度,否则Thera Macula当前不起作用。另外,Thera可能已经冷却了至少10-100年,并且仍然包含一个地下湖,该湖可能需要30万年才能结晶。根据本研究,即使存在约50 cm的绝缘层,一种能够检测到高于环境约5 K的异常的更灵敏的仪器也可以检测Thera Macula的活动。

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