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首页> 外文期刊>Journal of Low Temperature Physics >Absorber materials for transition-edge sensor X-ray microcalorimeters
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Absorber materials for transition-edge sensor X-ray microcalorimeters

机译:过渡边缘传感器X射线量热仪的吸收材料

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摘要

Arrays of superconducting transition-edge sensors (TES) can provide high spatial and energy resolution necessary for X-ray astronomy. High quantum efficiency and uniformity of response can be achieved with a suitable absorber material, in which absorber X-ray stopping power, heat capacity, and thermal conductivity are relevant parameters. Here we compare these parameters for bismuth and gold. We have fabricated electroplated gold, electroplated gold/electroplated bismuth, and evaporated gold/evaporated bismuth 8 x 8 absorber arrays and find that a correlation exists between the residual resistance ratio (RRR) and thin film microstructure. This finding indicates that we can tailor absorber material conductivity via microstructure alteration, so as to permit absorber thermalization on timescales suitable for high energy resolution X-ray microcalorimetry. We show that by incorporating absorbers possessing large grain size, including electroplated gold and electroplated gold/electroplated bismuth, into our current Mo/Au TES, devices with tunable heat capacity and energy resolution of 2.4 eV (gold) and 2.1 eV (gold/bismuth) FWHM at 5.9 keV have been fabricated.
机译:超导过渡边缘传感器(TES)的阵列可提供X射线天文学所需的高空间和能量分辨率。使用合适的吸收体材料可以实现高量子效率和响应均匀性,其中吸收体X射线的阻止能力,热容量和导热系数是相关参数。在这里,我们比较铋和金的这些参数。我们制造了电镀金,电镀金/电镀铋和蒸发金/蒸发铋8 x 8吸收体阵列,发现残留电阻比(RRR)与薄膜微结构之间存在相关性。这一发现表明,我们可以通过改变微观结构来调整吸收体材料的电导率,从而允许吸收体在适合高能量分辨率X射线微量热法的时间尺度上热化。我们表明,通过将具有大晶粒尺寸的吸收体(包括电镀金和电镀金/电镀铋)结合到我们当前的Mo / Au TES中,可调节热容量和能量分辨率分别为2.4 eV(金)和2.1 eV(金/铋)的器件)已制造出5.9 keV的FWHM。

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