论文标题

四极旋转液体,八度亲旋耦合和奇特的频率超导性

Quadrupolar spin liquid, octupolar Kondo coupling and odd-frequency superconductivity in an exactly solvable model

论文作者

de Farias, Carlene S., de Carvalho, Vanuildo S., Miranda, Eduardo, Pereira, Rodrigo G.

论文摘要

我们为$ j _ {\ text {eff}} = \ frac32 $ honeycomb lattice上的本地矩提出了一个准确的可解决模型。我们的构建以对称分析为指导,并根据对多极操作员的Majorana fermion表示形式进行精确解决方案的要求。模型中的主要相互作用可以解释为键依赖的四极极端相互作用。当时间逆转对称性被明确破坏时,我们获得了具有单手性Majorana边缘模式的间隙旋转液体。我们还研究了另一个可解决的模型,其中将时间反向不变的自旋液体耦合到超导体中的传导电子。在存在涉及局部旋转的八极矩的近叶状耦合的情况下,巡回电子与自旋液体中的新兴Majorana Fermions杂交。这会导致自发时间逆转对称性破坏并产生奇数频配对。我们的结果表明$ J _ {\ text {eff}} = \ frac32 $具有较强四极核 - quadrupole的系统可能为非阿布尔量子自旋液体和非常规的超导性提供了途径。

We propose an exactly solvable model for $j_{\text{eff}}=\frac32$ local moments on the honeycomb lattice. Our construction is guided by a symmetry analysis and by the requirement of an exact solution in terms of a Majorana fermion representation for multipole operators. The main interaction in the model can be interpreted as a bond-dependent quadrupole-quadrupole interaction. When time reversal symmetry is explicitly broken, we obtain a gapped spin liquid with a single chiral Majorana edge mode. We also investigate another solvable model in which the time-reversal-invariant spin liquid is coupled to conduction electrons in a superconductor. In the presence of a Kondo-like coupling that involves the octupole moment of the localized spins, the itinerant electrons hybridize with the emergent Majorana fermions in the spin liquid. This leads to spontaneous time reversal symmetry breaking and generates odd-frequency pairing. Our results suggest that $j_{\text{eff}}=\frac32$ systems with strong quadrupole-quadrupole interactions may provide a route towards non-Abelian quantum spin liquids and unconventional superconductivity.

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