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首页> 外文期刊>Physica status solidi, B. Basic research >Spin beam splitter based on Goos-H?nchen shifts in two-dimensional electron gas modulated by ferromagnetic and Schottky metal stripes
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Spin beam splitter based on Goos-H?nchen shifts in two-dimensional electron gas modulated by ferromagnetic and Schottky metal stripes

机译:基于Goos-H?nchen位移的自旋分束器在铁磁和肖特基金属条调制的二维电子气中

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We present a theoretical study on the spin-dependent Goos-H?nchen(GH) effect in a two-dimensional electron gas modulated by ferromagnetic and Schottky metal(SM) stripes. The GH shifts for spin electron beams across this device are calculated with the help of the stationary phase method. It is shown that the GH shift of spin-up beam is significantly different from that of spin-down beam, i.e., this device shows up a considerable spin polarization effect in GH shifts of electron beams. It also is shown that both magnitude and sign of spin polarization of GH shifts are closely related to the stripe width, the magnetic strength and the gated voltage under SM stripe. These interesting properties not only provide an effective method of spin injection for spintronics application, but also give rise to a tunable spin beam splitter.
机译:我们对铁磁和肖特基金属(SM)条纹调制的二维电子气中自旋相关的Goos-H?nchen(GH)效应进行了理论研究。借助固定相方法可以计算出穿过该器件的自旋电子束的GH位移。可以看出,自旋向上电子束的GH偏移与自旋向下电子束的GH偏移显着不同,即,该器件在电子束的GH偏移中显示出相当大的自旋极化效应。还表明,GH位移的自旋极化的大小和符号都与SM条纹下的条纹宽度,磁强度和门控电压密切相关。这些有趣的特性不仅为自旋电子学应用提供了自旋注入的有效方法,而且还产生了可调谐的自旋分束器。

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