Physikalisch-Technische Bundesanstalt, Bundesallee 100, D-38116 Braunschweig, Germany.
Phys Rev Lett. 2011 Oct 21;107(17):177201. doi: 10.1103/PhysRevLett.107.177201. Epub 2011 Oct 17.
We study tunneling magnetothermopower (TMTP) in CoFeB/MgO/CoFeB magnetic tunnel junction nanopillars. Thermal gradients across the junctions are generated by an electric heater line. Thermopower voltages up to a few tens of μV between the top and bottom contact of the nanopillars are measured which scale linearly with the applied heating power and hence the thermal gradient. The thermopower signal varies by up to 10 μV upon reversal of the relative magnetic configuration of the two CoFeB layers from parallel to antiparallel. This signal change corresponds to a large spin-dependent Seebeck coefficient of the order of 100 μV/K and a large TMTP change of the tunnel junction of up to 90%.
我们研究了 CoFeB/MgO/CoFeB 磁性隧道结纳米柱中的隧穿磁热伏特效应(TMTP)。通过一个电加热器线在结中产生热梯度。测量了纳米柱的顶部和底部接触之间高达几十微伏的热伏特电压,该电压与施加的加热功率成正比,因此也与热梯度成正比。当两个 CoFeB 层的相对磁配置从平行变为反平行时,热伏特信号变化高达 10 μV。这个信号变化对应于大约 100 μV/K 的大自旋相关塞贝克系数和高达 90%的隧道结 TMTP 的大变化。