We study the local antisymmetric spin-orbit (ASO) coupling effect on spin, orbital, and charge degrees of freedom for the Kondo effect in a triangular triple quantum dot (TTQD). Here, one of the three QDs is coupled to a metallic lead through electron tunneling, and a local electric polarization is induced by the Kondo effect. The ASO interaction is introduced in the other two coupled QDs on the opposite side of the lead. Generally, the ASO coupling effect is very weak and not easily detectable, but it essentially causes spin and charge reconfigurations in the TTQD through the Kondo effect. Using an extended Anderson model for the TTQD Kondo system, we elucidate that the ASO coupling gives rise to a considerable reduction of the emergent electric polarization, as a consequence of the parity mixing of molecular orbitals in the triangular loop as well as the spin-up and spin-down coupling of local electrons. The latter leads to a local diamagnetic susceptibility owing to the ASO coupled spins. We also show that the Kondo-induced electric polarization can be controlled by the ASO coupling as well as by the magnetic flux penetrating through the TTQD.
翻译:我们研究了在旋转、轨道和充电三重量点(TTQD)中Kondo效应对旋转、轨道和充电自由度的当地反对称旋转轨道(ASO)结合效应。在这里,三个QD中的一个通过电子隧道与金属铅相连接,而当地电极则由Kondo效应引发。ASO相互作用引入了铅对面的另外两个相加的QD中。一般而言,ASO结合效应非常弱,不易检测,但主要导致TTQD通过Kondo效应进行旋转和充电重组。在TTQD Kondo系统中使用一个扩展的Anderson模型,我们解释说,ASO的结合导致新兴电极化显著减少,这是三角循环中分子轨道的对等混合以及当地电离子的旋转和旋转式组合的结果。后者导致当地地磁感应因ASOO和Kondo效应而发生。我们还说明,Kondo-D驱动的电离层变变变变变,作为D-D-TV的磁变变变的变变变,通过A-D-D-TTTTQ加以控制。