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Exploring the phase diagram of the two-impurity Kondo problem

机译:探索两个杂质的近藤问题的相图

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A system of two exchange-coupled Kondo impurities in a magnetic field gives rise to a rich phase space hosting a multitude of correlated phenomena. Magnetic atoms on surfaces probed through scanning tunnelling microscopy provide an excellent platform to investigate coupled impurities, but typical high Kondo temperatures prevent field-dependent studies from being performed, rendering large parts of the phase space inaccessible. We present a study of pairs of Co atoms on insulating Cu2N/Cu(100), which each have a Kondo temperature of only 2.6 K. The pairs are designed to have interaction strengths similar to the Kondo temperature. By applying a sufficiently strong magnetic field, we are able to access a new phase in which the two coupled impurities are simultaneously screened. Comparison of differential conductance spectra taken on the atoms to simulated curves, calculated using a third-order transport model, allows us to independently determine the degree of Kondo screening in each phase.
机译:在磁场中由两个交换耦合的近藤杂质组成的系统产生了一个拥有大量相关现象的丰富相空间。通过扫描隧道显微镜探测的表面上的磁性原子为研究耦合杂质提供了一个极好的平台,但是典型的近藤高温导致无法进行依赖于场的研究,从而使大部分相空间无法进入。我们目前对绝缘Cu2N / Cu(100)上的Co原子对进行研究,每个Kondo的Kondo温度仅为2.6K。这些对被设计为具有类似于Kondo温度的相互作用强度。通过施加足够强的磁场,我们可以进入一个新的相,在该相中同时筛选了两个耦合的杂质。使用三阶传输模型计算得出的原子上的差分电导谱与模拟曲线的比较,使我们能够独立确定每个相中的近藤筛选度。

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