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Unfolding the physics of URu2Si2 through silicon to phosphorus substitution

机译:通过硅到磷的替代来展现URu2Si2的物理性质

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摘要

The heavy fermion intermetallic compound URu2Si2 exhibits a hidden-order phase below the temperature of 17.5 K, which supports both anomalous metallic behavior and unconventional superconductivity. While these individual phenomena have been investigated in detail, it remains unclear how they are related to each other and to what extent uranium f-electron valence fluctuations influence each one. Here we use ligand site substituted URu2Si2-xPx to establish their evolution under electronic tuning. We find that while hidden order is monotonically suppressed and destroyed for x≤0.035, the superconducting strength evolves non-monotonically with a maximum near x≈0.01 and that superconductivity is destroyed near x≈0.028. This behavior reveals that hidden order depends strongly on tuning outside of the U f-electron shells. It also suggests that while hidden order provides an environment for superconductivity and anomalous metallic behavior, it's fluctuations may not be solely responsible for their progression.
机译:重金属离子的金属间化合物URu2Si2在低于17.5 K的温度下表现出隐藏相,既支持异常的金属行为,又支持非常规的超导性。尽管已对这些现象进行了详细研究,但仍不清楚它们之间是如何关联的,以及铀f电子价态波动在多大程度上影响彼此。在这里,我们使用配体位点取代的URu2Si2-xPx在电子调谐下确定其演化。我们发现,当x≤0.035时,隐藏阶被单调抑制和破坏,但超导强度以非单调方式发展,最大值在x≈0.01附近,超导性在x≈0.028附近被破坏。此行为表明,隐藏顺序在很大程度上取决于U f电子外壳的调谐。这也表明,尽管隐藏秩序为超导性和异常金属行为提供了环境,但其波动可能并不完全负责其发展。

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