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1D FFLO state in absence of time reversal symmetry breaking

机译:一维FFLO状态没有时间反转对称性破坏

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We propose a route to a one-dimensional Fulde-Ferrell-Larkin-Ovchinnikov state in the absence of broken time-reversal symmetry. At present such a state may be encouraged in a clean (no disorder) AlAs quantum wire fabricated using the cleaved edge overgrowth technique. The fabrication technique captures two degenerate nonoverlapping bands separated in momentum-space by half an umklapp vector which leads to four Fermi points. Using field theoretic methods such as abelian bosonization and the renormalization group scheme we treat the important low energy long wavelength fermionic interaction terms for this one dimensional system. Due to the specific bandstructure arrangement of the quantum wire there is a new class of unique umklapp assisted interactions. These umklapp interactions are present at all electronic densities and are not related to the commensurability of the electron gas with the underlying lattice. We show that in the presence of the umklapp interactions and without any external perturbations such as a magnetic or electric field a singlet superconducting ground state is preferred with non-zero center-of-mass momentum for the Cooper pairs. The finite pairing momentum of the Cooper pairs is an indication of a Fulde-Ferrell-Larkin-Ovchinnikov state which is known to lead to inhomogeneous superconductivity.
机译:我们提出了在不存在时间反转对称性的情况下达到一维Fulde-Ferrell-Larkin-Ovchinnikov状态的路线。目前,在使用裂开的边缘过度生长技术制造的干净的(无序)AlAs量子线中可以鼓励这种状态。该制造技术捕获了两个退化的非重叠带,它们在动量空间中被半个umklapp向量分隔开,从而导致四个费米点。使用诸如阿贝尔玻色化和重整化群方案之类的场论方法,我们对该一维系统处理了重要的低能长波长铁离子相互作用项。由于量子线的特定能带结构安排,因此出现了一类新的独特的umklapp辅助相互作用。这些umklapp相互作用以所有电子密度存在,并且与电子气体与下面的晶格的可比性无关。我们表明,在存在umklapp相互作用且没有任何外部扰动(例如磁场或电场)的情况下,单重态超导基态对于Cooper对而言优选为非零质心动量。库珀对的有限配对动量表示Fulde-Ferrell-Larkin-Ovchinnikov状态,已知该状态会导致超导不均匀。

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