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Composite electronic orders induced by orbital Kondo effect

Composite electronic orders induced by orbital Kondo effect
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摘要 In a large number of rare-earth and actinide systems,Kondo effect tends to suppress magnetic orders by making the spin singlet between localized and conduction electron spins.In the presence of orbital degrees of freedom,however,there emerge exotic electronic orders induced by Kondo effect.The orbital Kondo effect can collectively make diagonal and off-diagonal(superconducting) orders.With the particle-hole symmetry in conduction bands,these orders are all degenerate,forming a macroscopic SO(5) multiplet.This paper discusses recent theoretical development on these electronic orders which are relevant to Pr^(3+) and U^(4+) systems with even number of f electrons per site.In the superconducting order,each conduction–electron pair is coupled with local degrees of freedom,forming a composite entity with a staggered spatial pattern.The quasi-particle spectrum is best interpreted as virtual hybridization with resonant states at the Fermi level.Possible order parameter for URu_2Si_2 in the hidden order state is discussed in the context of composite orders.Briefly discussed are related issues such as homogeneous odd-frequency pairing and SO(5) theory for hightemperature superconductors. In a large number of rare-earth and actinide systems, Kondo effect tends to suppress magnetic orders by making the spin singlet between localized and conduction electron spins. In the presence of orbital degrees of free- dom, however, there emerge exotic electronic orders in- duced by Kondo effect. The orbital Kondo effect can collectively make diagonal and off-diagonal (supercon- ducting) orders. With the particle-hole symmetry in con- duction bands, these orders are all degenerate, forming a macroscopic SO(5) multiplet. This paper discusses recent theoretical development on these electronic orders which are relevant to Pr3+ and U4+ systems with even number of f electrons per site. In the superconducting order, each conduction-electron pair is coupled with local degrees of freedom, forming a composite entity with a staggered spatial pattern. The quasi-particle spectrum is best inter- preted as virtual hybridization with resonant states at the Fermi level. Possible order parameter for URu2Si2 in the hidden order state is discussed in the context of composite orders. Briefly discussed are related issues such as homo- geneous odd-frequency pairing and SO(5) theory for high- temperature superconductors.
出处 《Science Bulletin》 SCIE EI CAS CSCD 2016年第20期1563-1582,共20页 科学通报(英文版)
基金 supported by KAKENHI of Japan Society for the Promotion of Science (JP24340072 and JP16K05464)
关键词 Orbital Kondo effect Composite orderOdd-frequency order S0(5) symmetry -Non-Kramers states Orbital Kondo effect Composite order Odd-frequency order SO(5) symmetry Non-Kramers states
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参考文献83

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