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Intra- and inter-shell Kondo effects in carbon nanotube quantum dots

机译:碳纳米管量子点中的壳内和壳间kondo效应

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The linear response transport properties of carbon nanotube quantum dot in the strongly correlated regime are discussed. The finite-U mean field slave boson approach is used to study many-body effects. Magnetic field can rebuilt Kondo correlations, which are destroyed by the effect of spin-orbit interaction or valley mixing. Apart from the field induced revivals of SU(2) Kondo effects of different types: spin, valley or spin-valley, also more exotic phenomena appear, such as SU(3) Kondo effect. Threefold degeneracy occurs due to the effective intervalley exchange induced by short-range part of Coulomb interaction or due to the intershell mixing. In narrow gap nanotubes the full spin-orbital degeneracy might be recovered in the absence of magnetic field opening the condition for a formation of SU(4) Kondo resonance.
机译:讨论了碳纳米管量子点在强关联区的线性响应输运性质。有限U平均场从玻色子方法被用来研究许多体效应。磁场可以重建近藤关联,这种关联会被自旋轨道相互作用或谷混合效应破坏。除了场诱导的不同类型的SU(2)近藤效应(自旋、谷或自旋谷)的复活外,还出现了更多的奇异现象,如SU(3)近藤效应。由于库仑相互作用的短程部分或壳层间混合引起的有效谷间交换,会出现三重简并。在窄禁带纳米管中,在没有磁场的情况下,可以恢复全自旋轨道简并度,从而为SU(4)近藤共振的形成创造条件。

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