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Study of Dissipative Losses in AC-Biased Mo/Au Bilayer Transition-Edge Sensors

机译:AC偏置MO / AU双层过渡边缘传感器耗散损失研究

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We are developing kilo-pixel arrays of transition-edge sensors (TESs) for the X-ray Integral Field Unit on ESA’s Athena observatory. Previous measurements of AC-biased Mo/Au TESs have highlighted a frequency-dependent loss mechanism that results in broader transitions and worse spectral performance compared to the same devices measured under DC bias. In order to better understand the nature of this loss, we are now studying TES pixels in different geometric configurations. We present measurements on devices of different sizes and with different metal features used for noise mitigation and X-ray absorption. Our results show how the loss mechanism is strongly dependent upon the amount of metal in close proximity to the sensor and can be attributed to induced eddy current coupling to these features. We present a finite element model that successfully reproduces the magnitude and geometry dependence of the losses. Using this model, we present mitigation strategies that should reduce the losses to an acceptable level.
机译:我们正在ESA的雅典雅典娜天文台上为X射线积分场单元开发千像沿过渡边缘传感器(TESS)。在AC偏置的MO / AU TES的先前测量突出显示了与在DC偏置下测量的相同设备相比,导致更宽的过渡和较差的光谱性能导致更宽的转换和较差的光谱性能。为了更好地了解这种损失的性质,我们现在正在研究不同的几何配置的TES像素。我们对不同尺寸的装置以及用于噪声缓解和X射线吸收的不同金属特征进行了测量。我们的结果表明,损耗机制如何强烈地取决于对传感器附近的金属量,并且可以归因于诱导与这些特征的涡流耦合。我们介绍了一个有限元模型,成功再现了损失的幅度和几何依赖性。使用此模型,我们呈现缓解策略,应将损失降低到可接受的水平。

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