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Quantum FFLO State in Clean Layered Superconductors

机译:清洁分层超导体中的量子FFLO状态

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We investigate the influence of Landau quantization on the superconducting instability for a pure layered superconductor in the magnetic field directed perpendicular to the layers. We demonstrate that the quantization corrections to the Cooper-pairing kernel with finite Zeeman spin splitting promote the formation of the nonuniform state in which the order parameter is periodically modulated along the magnetic field, i.e., between the layers (Fulde-Ferrell-Larkin-Ovchinnikov [FFLO] state). The conventional uniform state experiences such a quantization-induced FFLO instability at low temperatures even in a common case of predominantly orbital suppression of superconductivity when the Zeeman spin splitting is expected to have a relatively weak effect. The maximum relative FFLO temperature is given by the ratio of the superconducting transition temperature and the Fermi energy. This maximum is realized when the ratio of the spin-spitting energy and the Landau-level separation is half-integer. These results imply that the FFLO states may exist not only in the Pauli-limited superconductors but also in very clean materials with small Zeeman spin-splitting energy. We expect that the described quantization-promoted FFLO instability is a general phenomenon, which may be found in materials with different electronic spectra and order-parameter symmetries.
机译:我们研究了Landau量化对垂直于层的磁场中纯层超导体的超导不稳定性的影响。我们证明,具有有限塞曼旋转分裂的组合物配对内核的量化校正促进了沿着磁场周期性地调制的非均匀状态的形成,即在层之间(Fulde-Ferrell-larkin-Ovchinnikov之间的顺序参数[fflo]状态)。常规均匀状态在低温下经历这种量化引起的FFLO不稳定性,即使在预期塞曼栓塞分裂时主要轨道抑制超导电性的常见情况下也具有相对较弱的效果。通过超导转变温度和费米能量的比率给出最大相对FFLO温度。当旋转吐痰能量和Landau级别分离的比例是半整数时,实现该最大值。这些结果意味着FFLO状态不仅可能存在于Pauli限制的超导体中,而且可能存在于具有小塞曼旋转能量的非常清洁的材料中。我们预期,所描述的量化促进的FFLO不稳定性是一般现象,其可以以不同的电子谱和订单参数对称的材料。

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