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High resolution thermometry using the magnetic penetration depth of superconducting films

机译:使用超导膜的磁穿透深度的高分辨率温度

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A Penetration Depth Tehrmometer (PDT) has been under development for potential use in microgravity critical point experiments. The active element is a superconducting film whose thickness is comparable to the magnetic penetration depth (5-20 nm). Field penetration is strongly temperature dependent just below the transition (approx0.9 -1.0 T_c). Fields are generated and sensed by using excitation and pickup coils located near the film. Using a dc SQUID sensor for readout, temperature resolution on the order of 0.1 nK/sqHz. Improvements in coil design have since yielded a factor of 3 improvement. PDT's have been made with aluminum films deposited on a planar sapphire substrate with transition temperatures greater than the lambda point in superfluid helium. For performance tests, a cryostat has been constructed where the PDT will be in an experimental cell filled with superfluid. This will provide thermal stability better than 0.1 nK/sqHz. Results of the current design are presented.
机译:渗透深度Tehrmometer(PDT)已经开发开发,以潜在使用微颅关键点实验。活性元件是超导膜,其厚度与磁穿透深度(5-20​​nm)相当。场渗透强度依赖于过渡(大约0.9 -1.0 t_c)。通过使用位于薄膜附近的激励和拾取线圈产生和感测的字段。使用DC鱿鱼传感器进行读出,温度分辨率为0.1 nk / sqhz。线圈设计的改进由于产生了3倍的改善。已经使用沉积在平面蓝宝石衬底上的铝膜进行了PDT,其过渡温度大于超流氦中的λ点。对于性能测试,已经构建了低温恒温器,其中PDT将在填充有超流体的实验细胞中。这将提供优于0.1 nk / sqhz的热稳定性。提出了当前设计的结果。

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