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Kondo effect in an integer-spin quantum dot

机译:整数自旋量子点中的近藤效应

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The Kondo effect—a many-body phenomenon in condensed-matter physics involving the interaction between a localized spin and free electrons—was discovered in metals containing small amounts of magnetic impurities, although it is now recognized to be of fundamental importance in a wide class of correlated electron systems. In fabricated structures, the control of single, localized spins is of technological relevance for nano-scale electronics. Experiments have already demonstrated artificial realizations of isolated magnetic impurities at metallic surfaces, nanoscale magnets, controlled transitions between two-electron singlet and triplet states, and a tunable Kondo effect in semiconductor quantum dots. Here we report an unexpected Kondo effect in a few-electron quantum dot containing singlet and triplet spin states, whose energy difference can be tuned with a magnetic field. We observe the effect for an even number of electrons, when the singlet and triplet states are degenerate. The characteristic energy scale is much larger than in the ordinary spin-1/2 case.
机译:近藤效应是凝聚态物理学中涉及局部自旋和自由电子相互作用的多体现象,是在含有少量磁性杂质的金属中发现的,尽管现在已被广泛认为具有根本重要性相关电子系统在制造的结构中,单个局部自旋的控制对于纳米级电子学具有技术意义。实验已经证明了在金属表面,纳米级磁体,两电子单重态和三重态之间的受控过渡以及半导体量子点中可调谐的近藤效应的人工实现。在这里,我们报道了在包含单重态和三重态自旋态的几个电子量子点中出现的意外的近藤效应,其能量差可以通过磁场来调节。当单重态和三重态退化时,我们观察到偶数个电子的影响。特征能级比普通自旋1/2情况大得多。

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