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首页> 外文期刊>International Journal of Nanotechnology >Spin-orbit coupling and optical detection of spin polarisation in triangular graphene quantum dots
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Spin-orbit coupling and optical detection of spin polarisation in triangular graphene quantum dots

机译:三角石墨烯量子点的自旋轨道耦合和自旋极化的光学检测

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摘要

We present a theory of the effect of spin-orbit coupling on optical properties of triangular graphene quantum dots (TGQD). TGQDs with zigzag edges exhibit a degenerate band of states at the Fermi level. For the charge neutral TGQD, the shell is expected to be half-filled by spin polarised electrons leading to finite magnetisation. Using four-band tight-binding and effective Kane-Mele models, we show that, if the TGQD is spin polarised, the low energy optical absorption spectrum reveals two distinct peaks corresponding to left and right circularly polarised light while the unpolarised TGQD shows only one peak. This allows optical detection of spin polarisation, its direction and the strength of spin-orbit coupling in TGQDs.
机译:我们提出了自旋轨道耦合对三角石墨烯量子点(TGQD)光学性质的影响的理论。具有锯齿形边缘的TGQD在费米能级表现出简并的能带。对于电荷中性的TGQD,预计壳会被自旋极化电子充满,从而导致有限的磁化强度。使用四波段紧束缚和有效的Kane-Mele模型,我们表明,如果TGQD是自旋偏振的,则低能光吸收光谱会显示出对应于左右圆偏振光的两个不同的峰,而未偏振的TGQD仅显示一个峰。这可以对TGQD中的自旋极化,其方向和自旋轨道耦合强度进行光学检测。

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