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Experimental proof of the reciprocal relation between spin Peltier and spin Seebeck effects in a bulk YIG/Pt bilayer

机译:YIG / Pt双层中自旋珀耳帖效应和自旋塞贝克效应之间的相互关系的实验证明

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摘要

We verify for the first time the reciprocal relation between the spin Peltier and spin Seebeck effects in a bulk YIG/Pt bilayer. Both experiments are performed on the same YIG/Pt device by a setup able to accurately determine heat currents and to separate the spin Peltier heat from the Joule heat background. The sample-specific value for the characteristics of both effects measured on the present YIG/Pt bilayer is (6.2 ± 0.4) × 10−3 KA−1. In the paper we also discuss the relation of both effects with the intrinsic and extrinsic parameters of YIG and Pt and we envisage possible strategies to optimize spin Peltier refrigeration.
机译:我们第一次验证了自旋珀耳帖效应和自旋塞贝克效应在块状YIG / Pt双层薄膜中的相互关系。通过能够准确确定热流并将自旋珀耳帖热与焦耳热本底分离的设置,在同一YIG / Pt器件上进行了这两个实验。在当前的YIG / Pt双层上测量的两种效应的特性的样品特有值为(6.2±0.4)×10 -3 KA -1 。在本文中,我们还讨论了两种效应与YIG和Pt的内在和外在参数之间的关系,并设想了可能的策略来优化自旋帕尔贴制冷。

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