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Significant change of spin transport property in Cu/Nb bilayer due to superconducting transition

机译:由于超导转变,Cu / Nb双层中的自旋输运性质发生了显着变化

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The combination between the spin-dependent and super-conducting (SC) transports is expected to provide intriguing properties such as crossed Andreev reflection and spin-triplet superconductivity. This may be able to open a new avenue in the field of spintronics, namely superconducting spintronics because a superconductor itself has great potential for future nanoelectronic applications. To observe such SC spin transports, the suppression of the extrinsic effects originating from the heating and Oersted field due to the electric current is a crucial role. Pure spin current without accompanying the charge current is known as a powerful mean for preventing such extrinsic effects. However, non-negligible heat flow is found to exist even in a conventional pure spin current device based on laterally-configured spin valve because of the heating around the spin injector. Here, we develop a nanopillar-based lateral spin valve, which significantly reduces the heat generation, on a superconducting Nb film. By using this ideal platform, we found that the spin absorption is strongly suppressed by the SC transition of Nb. This demonstration is the clear evidence that the super-conducting Nb is an insulator for the pure spin current.
机译:自旋依赖性和超导(SC)传输之间的组合有望提供令人感兴趣的特性,例如交叉的安德列夫反射和自旋三重态超导性。这可能能够为自旋电子学领域,即超导自旋电子学,开辟新的途径,因为超导体本身对于未来的纳米电子应用具有巨大的潜力。为了观察这样的SC自旋输运,抑制由于电流引起的来自加热场和奥斯特场的外在效应是至关重要的。纯自旋电流而不伴随充电电流被公认为是防止这种外在效应的有力手段。然而,由于自旋喷射器周围的加热,即使在基于横向构造的自旋阀的传统的纯自旋电流装置中也发现存在不可忽略的热流。在这里,我们开发了一种基于纳米柱的侧向旋转阀,该阀在超导Nb薄膜上显着减少了热量的产生。通过使用该理想平台,我们发现Nb的SC跃迁强烈抑制了自旋吸收。该演示清楚地表明,超导Nb是纯自旋电流的绝缘体。

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