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首页> 外文期刊>Journal of Low Temperature Physics >Fabrication of robust superconducting granular aluminium/palladium bilayer microbolometers with sub-nanosecond response
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Fabrication of robust superconducting granular aluminium/palladium bilayer microbolometers with sub-nanosecond response

机译:具有亚纳秒响应的坚固超导颗粒状铝/钯双层微辐射热计的制造

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摘要

We provide a convenient recipe for fabricating reliable superconducting microbolometers as acoustic phonon detectors with sub-nanosecond response, using image-reversal optical lithography and dc-magnetron sputtering, and our recipe requires no chemical or plasma etching. Our approach solves the traditional problem for granular aluminium bolometers of unreliable (i.e., non-Ohmic) electrical contacts by sequentially sputtering the granular aluminium film and then a palladium capping layer. We use dc calibration data, the method of Danilchenko et al. (Acta Phys. Pol. A 103(4):325, [2003]) and direct nanosecond-pulsed photoexcitation to obtain the microbolometer's characteristic current, thermal conductance, characteristic relaxation time, and heat capacity. We also demonstrate the use of the deconvolution algorithm of Edwards et al. (J. Phys. E Sci. Instrum. 22:582, [1989]) to obtain the phonon flux in a heat pulse experiment with nanosecond resolution.
机译:我们提供了一个方便的配方,可使用图像反转光学光刻和dc磁控管溅射来制造可靠的超导微辐射热计,作为具有亚纳秒响应的声子探测器,并且无需化学或等离子刻蚀。我们的方法通过依次溅射颗粒状铝膜和钯覆盖层,解决了不可靠(即非欧姆)电接触的颗粒状铝辐射热计的传统问题。我们使用直流校准数据,这是Danilchenko等人的方法。 (Acta Phys.Pol.A 103(4):325,[2003])和直接纳秒脉冲光激发获得微测辐射热计的特征电流,热导率,特征弛豫时间和热容量。我们还演示了Edwards等人的反卷积算法的使用。 (J. Phys。E Sci。Instrum。22:582,[1989])在具有纳秒分辨率的热脉冲实验中获得声子通量。

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