Oscillatory Nernst effect in Pt|ferrite|cuprate-superconductor trilayer films.

Oscillatory Nernst effect in Pt|ferrite|cuprate-superconductor trilayer films.
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DOI:
10.1038/s41598-017-05747-6
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发表时间:
2017-07-13
期刊:
影响因子:
4.6
通讯作者:
Saitoh E
Saitoh E
中科院分区:
综合性期刊3区
文献类型:
--
作者:
Shiomi Y;Lustikova J;Saitoh E

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虽然磁性和超导性很难在单一材料中共存,但纳米技术和自旋电子学的最新进展揭示了它们在薄膜异质结构中磁输运的相互作用。在这里,我们发现了一个周期振荡的能斯特电压相对于磁场的Pt| LiFe5O8(Pt| LFO)双层生长在铜酸盐超导体YBa2Cu3O7−x(YBCO)上。在高于YBCO超导转变温度(TC)的高温下,|观察到LFO层。当温度降低到T C以下时,自旋Seebeck电压被抑制,出现了非常规的周期性电压振荡,这种振荡是磁场的函数,在超导状态下沿霍尔方向沿着出现,目前还没有观察到.被表面沉淀物钉扎的超导涡旋的动力学似乎是振荡能斯特效应的原因。
Although magnetism and superconductivity hardly coexist in a single material, recent advances in nanotechnology and spintronics have brought to light their interplay in magnetotransport in thin-film heterostructures. Here, we found a periodic oscillation of Nernst voltage with respect to magnetic fields in Pt|LiFe5O8 (Pt|LFO) bilayers grown on a cuprate superconductor YBa2Cu3O7−x (YBCO). At high temperatures above the superconducting transition temperature (T C) of YBCO, spin Seebeck voltages originating in Pt|LFO layers are observed. As temperature decreases well below T C, the spin Seebeck voltage is suppressed and unconventional periodic voltage oscillation as a function of magnetic fields appears; such an oscillation emerging along the Hall direction in the superconducting state has not been observed yet. Dynamics of superconducting vortices pinned by surface precipitates seems responsible for the oscillatory Nernst effect.
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