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Coexistence of Antiferromagnetism and Superconductivity in Heavy Fermion Cerium Compound Ce3PdIn11

机译:重铁铈化合物Ce3PdIn11中反铁磁和超导的共存

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摘要

Many current research efforts in strongly correlated systems focus on the interplay between magnetism and superconductivity. Here we report on coexistence of both cooperative ordered states in recently discovered stoichiometric and fully inversion symmetric heavy fermion compound Ce3PdIn11 at ambient pressure. Thermodynamic and transport measurements reveal two successive magnetic transitions at T1 = 1.67 K and TN = 1.53 K into antiferromagnetic type of ordered states. Below Tc = 0.42 K the compound enters a superconducting state. The large initial slope of dBc2/dT ≈ – 8.6 T/K indicates that heavy quasiparticles form the Cooper pairs. The origin of the two magnetic transitions and the coexistence of magnetism and superconductivity is briefly discussed in the context of the coexistence of the two inequivalent Ce-sublattices in the unit cell of Ce3PdIn11 with different Kondo couplings to the conduction electrons.
机译:当前在强相关系统中的许多研究工作都集中在磁性和超导性之间的相互作用上。在这里,我们报道了在环境压力下,最近发现的化学计量和完全反型的对称重费米子化合物Ce3PdIn11中两个合作有序状态的共存。热力学和输运测量表明,在T1 = 1.67 K和TN = 1.53 K处有两个连续的磁转变为有序状态的反铁磁类型。在Tc = 0.42 K以下时,该化合物进入超导状态。 dBc2 / dT≈– 8.6 T / K的大初始斜率表明重的准粒子形成了库珀对。在Ce3PdIn11晶胞中两个不等价的Ce亚晶格共存的情况下,简要讨论了这两个磁跃迁的起源以及磁和超导的共存,其中Kondo与传导电子的耦合不同。

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