论文标题
轨道引起的Fulde-Ferrell-larkin-ovchinnikov阶段的轨道跨界
Orbital-Induced Crossover of the Fulde-Ferrell-Larkin-Ovchinnikov Phase into Abrikosov-like States
论文作者
论文摘要
Fulde-Ferrell-Larkin-Ovchinnikov(FFLO)状态可以在轨道危机领域超过Pauli限制的超导体中出现。在这里,我们介绍了Quasi-Two-Two-Two二维有机超导体$κ$ - (ET)$ _ 2 $ CU(NCS)$ _ 2 $的角度分辨的特定热数据,重点是FFLO转移政权的高领域。为了增加施加磁场的平面外倾斜,导致轨道贡献的增加,我们发现超导转变的性质从二阶到一阶变化,并且在高场超导阶段内出现了进一步的过渡。然而,对于几个程度的野外倾斜,超过Pauli极限的超导状态是稳定的。由于磁场的任何有限垂直成分都必定会导致轨道运动的量化,因此所得的涡流晶格状态与FFLO状态的调制顺序参数竞争,从而导致复杂的高场超导阶段。通过在弱耦合BCS理论中求解线性化的自矛盾方程,我们表明我们的结果是轨道诱导的FFLO订单参数转化为较高Landau水平的类似Abrikosov状态的明确实验证据。
The Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state can emerge in superconductors for which the orbital critical field exceeds the Pauli limit. Here, we present angular-resolved specific-heat data of the quasi-two-dimensional organic superconductor $κ$-(ET)$_2$Cu(NCS)$_2$, with a focus on high fields in the regime of the FFLO transition. For an increasing out-of-plane tilt of the applied magnetic field, which leads to an increase of orbital contributions, we found that the nature of the superconducting transition changes from second to first order and that a further transition appears within the high-field superconducting phase. However, the superconducting state above the Pauli limit is stable for field tilt of several degrees. Since any finite perpendicular component of the magnetic field necessarily leads to quantization of the orbital motion, the resulting vortex lattice states compete with the modulated order parameter of the FFLO state leading to complex high-field superconducting phases. By solving the linearized self-consistency equation within weak-coupling BCS theory, we show that our results are clear experimental evidence of an orbital-induced transformation of the FFLO order-parameter into Abrikosov-like states of higher Landau levels.