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Superconductivity in hole-doped germanium point contacts

机译:空穴掺杂锗点接触的超导性

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We have observed superconductivity in heavy p-doped Ge by measuring of differential resistance dV/dI(V) of Ge-PtIr point contacts. The superconducting features disappear above 6 K or above 1 T, what can be taken as the critical temperature and the critical magnetic field, respectively. The observed dV/dI(V) spectrum with Andreev reflection like features was fitted within one-gap Blonder-Tinkham-Klapwijk model. The extracted superconducting gap demonstrates Bardeen-Cooper-Schrieffer-like behavior with 2 UDelta;/k(B)T(c) = 10.5 PLUSMN; 0.5 ratio, which is much higher than expected for conventional superconductors. Magnetic field suppresses Andreev reflection features, but the superconducting gap moderately decreases in magnetic field similarly as it was observed previously for the type II superconductors, including nickel borocarbide and iron-based superconductors. Curiously, we have not yet observed superconductivity in n-doped Ge with a similar dopant concentration.
机译:我们发现超导在重通过测量微分p型通用电气电阻dV / Ge-PtIr dI (V)的接触点。上面的超导特性消失6 K以上1 T,可以作为关键温度和临界磁场,分别。安德列夫反射特性是安装在一个缺口Blonder-Tinkham-Klapwijk模型。提取的超导差距了2 & Bardeen-Cooper-Schrieffer-like行为UDelta; T / k (B) (c) = 10.5 & PLUSMN;这比预期的要高得多常规超导体。抑制安德列夫反射特性,但是超导差距适度减少磁场同样观察到II型超导体之前,包括borocarbide镍和铁基超导体。观察超导在n型通用电气类似的掺杂剂浓度。

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