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Signatures of quantum phase transitions in parallel quantum dots: Crossover from local moment to underscreened spin-1 Kondo physics

机译:平行量子点中量子相变的特征:从局部矩到筛选不足的自旋1近藤物理学的交叉

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摘要

We study a strongly interacting "quantum dot 1" and a weakly interacting "dot 2" connected in parallel to metallic leads. Gate voltages can drive the system between Kondo-quenched and non-Kondo free-moment phases separated by Kosterlitz-Thouless quantum phase transitions. Away from the immediate vicinity of the quantum phase transitions, the physical properties retain signatures of first-order transitions found previously to arise when dot 2 is strictly noninteracting. As interactions in dot 2 become stronger relative to the dot-lead coupling, the free moment in the non-Kondo phase evolves smoothly from an isolated spin-one-half in dot 1 to a many-body doublet arising from the incomplete Kondo compensation by the leads of a combined dot spin-one. These limits, which feature very different spin correlations between dot and lead electrons, can be distinguished by weak-bias conductance measurements performed at finite temperatures.
机译:我们研究了与金属引线并联的强相互作用的“量子点1”和弱相互作用的“点2”。栅极电压可以在由Kosterlitz-Thouless量子相变分隔开的Kondo猝灭相和非Kondo自由矩相之间驱动系统。远离量子相变的物理性质保留了点2严格不相互作用时以前出现的一阶跃迁的特征。当点2中的相互作用相对于点-引线耦合变得更强时,非近藤阶段中的自由矩从点1中的孤立的自旋二分之一平稳地演化为由于不完整的近藤补偿引起的多体双峰。组合点旋转的引线。这些极限的特征是点电子和铅电子之间的自旋相关性非常不同,可以通过在有限温度下执行的弱偏置电导测量来区分。

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