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Influence of ice thickness on SMOS and aquarius brightness temperatures over Antarctica

机译:冰层厚度对南极SMOS和水瓶座亮度温度的影响

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The Dome-C region, in the East Antarctic Plateau, has been used for calibration/validation of satellite microwave radiometers since the 1970's. However, its use as an independent external target has been recently questioned due to some spatial inhomogeneities found in L-band airborne and satellite observations. This work evidences the influence of the Antarctic ice thickness spatial variations on the measured SMOS and Aquarius brightness temperatures (T). The possible effects of subglacial water and bedrock on the acquired radiometric signals have also been analyzed. A 3-months no-daylight period during the Austral winter has been selected. Four transects over East Antarctica have been defined to study the spatial variations. A good agreement between SMOS and Aquarius T changes and ice thickness variations over the whole Antarctica has been observed, obtaining linear correlations of 0.6-0.7 and slopes of 8.6-9.5 K/km. The subglacial lakes may affect the vertical physical temperature profile and/or the dielectric properties of the ice layers above. As expected, the subglacial bedrock is not contributing to the measured T, since the maximum estimated L-band penetration depth is ~1-1.5 km.
机译:自1970年代以来,位于南极东部高原的Dome-C地区一直用于卫星微波辐射计的校准/验证。但是,由于在L波段机载和卫星观测中发现某些空间不均匀性,最近将其用作独立的外部目标受到了质疑。这项工作证明了南极冰厚度空间变化对测得的SMOS和水瓶座亮度温度(T)的影响。还分析了冰川下水和基岩对采集的辐射信号的可能影响。选择了南方冬季三个月的无日时段。已经定义了南极东部的四个样带来研究空间变化。在整个南极洲,SMOS和水瓶座T的变化与冰厚度的变化之间存在很好的一致性,获得了0.6-0.7的线性相关性和8.6-9.5 K / km的斜率。冰川下的湖泊可能会影响垂直物理温度分布和/或上方冰层的介电性能。正如预期的那样,由于估计的最大L波段穿透深度为〜1-1.5 km,因此冰下基岩对测得的T没有贡献。

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