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Cooper pair breaking

机译:库珀对破

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摘要

An overview is given of a number of pair-breaking interactions in superconductors. They have in common that they violate a symmetry of the pair state. In most cases pairs are formed from time reversed single-particle states, a noticeable exception being antiferromagnetic superconductors. When time reversibility is broken by an interaction acting on the electrons, the time evolution of the time-reversal operator plays an important role. Depending on whether it is nonergodic or ergodic, we deal with pair weakening or pair breaking. Numerous different interactions are analyzed and discussed. Unifying features of different pair-breaking cases are pointed out. Special attention is paid to the Zeeman effect and to scattering centers with low-energy excitations. The Kondo effect and crystalline field split rare-earth ions belong in that category. Modifications caused by strongly anisotropic pair states are pointed out. There is strong evidence that in some cases intra-atomic excitations lead to pair formation rather than pair breaking for which an explanation is provided.
机译:概述了超导体中的许多成对断开的相互作用。它们的共同点在于它们违反了配对状态的对称性。在大多数情况下,对是由时间反转的单粒子状态形成的,值得注意的例外是反铁磁超导体。当通过作用在电子上的相互作用破坏时间可逆性时,时间可逆算符的时间演化起着重要作用。根据是非遍历还是遍历,我们处理弱对或破坏对。分析和讨论了许多不同的交互。指出了不同破对情况的统一特征。特别注意塞曼效应和低能激发的散射中心。近藤效应和晶体场分裂稀土离子属于该类别。指出了由强各向异性对态引起的修饰。有充分的证据表明,在某些情况下,原子内的激发会导致成对形成而不是成对断裂,对此提供了解释。

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