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Electromagnetic characterization of saline mixture for shallow radar exploration

机译:浅层雷达探测中盐溶液的电磁表征

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The first recognition of the Jupiter system, performed by the Voyager spacecraft, suggested the possibility of an ocean of liquid water beneath the ice shell two of Jupiter's moons, Ganymede and Europa. In addition, the Galileo mission detected in the icy shell the presence of impurities like magnesium and sodium sulfates, and sulfuric and hydrochloric acids. JUICE - JUpiter ICy moons Explorer will investigate the potentially habitable zones in the Ganymede, Europa and Callisto moons. In particular a radar sounder (RIME) operating at 9 MHz, optimized for the penetration of the icy shell, will provide the subsurface survey up to a depth of about 9 km. The performance of RIME depends on the electromagnetic properties of the icy shells, which in turn are related to the impurity contents and temperature. In this scenario, we have performed measurements of dielectric properties of ice doped with MgSO, NaSO. The tests were performed as a function of frequency from 20 Hz to 1 MHz and temperature down to 100 K. The electromagnetic behaviour of saline-ices have shown that the attenuation coefficient becomes very small when the temperature decreases.
机译:由旅行者号航天器执行的对木星系统的首次认可表明,在木星的两个卫星木卫三和欧罗巴的冰壳下可能存在液态水的海洋。此外,伽利略任务在冰冷的外壳中检测到存在诸如镁和硫酸钠,硫酸和盐酸之类的杂质。果汁-木星ICy卫星探险家将调查木卫三,欧罗巴和卡利斯托卫星的潜在宜居区域。特别是针对冰壳的穿透进行了优化的,以9 MHz运行的雷达测深仪(RIME),将提供深度约9 km的地下测量。 RIME的性能取决于冰壳的电磁特性,而电磁特性又与杂质含量和温度有关。在这种情况下,我们已经对掺有MgSO,NaSO的冰的介电性能进行了测量。测试是从20 Hz到1 MHz的频率以及温度低至100 K的函数进行的。盐水冰的电磁行为表明,当温度降低时,衰减系数变得非常小。

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