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FFLO States in Layered Organic Superconductors

机译:分层有机超导体中的fflo状态

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摘要

In this short review, the recently found experimental evidence that Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) states are realized in quasi-two-dimensional (2D) organic superconductors is reported. At low temperatures and when a high magnetic field is aligned parallel to the conducting organic layers, an upturn of the upper critical field much beyond the Pauli limit is observed, as proven by thermodynamic measurements. Under certain conditions, a second thermodynamic transition emerges inside the FFLO state. Nuclear magnetic resonance (NMR) work has added strong microscopic support for the realization of the FFLO state. The NMR spectra in the FFLO phase can very well be explained by a nonuniform one-dimensionally modulated superconducting order parameter. All these features, appearing only in a very narrow angular region close to parallel-field orientation, give robust evidence for the realization of the FFLO state in organic superconductors.
机译:在这近综述中,据报道,最近发现富尔·费尔利 - 莱克因-Vovchinnikov(FFLO)状态在准二维(2D)有机超导体中实现的实验证据。 在低温并且当高磁场平行于导电有机层时,通过热力学测量证明,观察到超出Pauli极限的上临界领域的高度上升。 在某些条件下,在FFLO状态内出现第二热力学转变。 核磁共振(NMR)工作已经增加了强烈的显微镜载体来实现FFLO状态。 FFLO相中的NMR光谱可以通过非均匀的一维调制超导顺序参数来解释非常好。 所有这些特征只出现在接近平行场取向的非常窄的角度区域中,为有机超导体中的FFLO状态提供了稳健的证据。

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