论文标题
热能在时间反转对称性损坏的超导体中的双重转变
Heat capacity double transitions in time-reversal symmetry broken superconductors
论文作者
论文摘要
标准超导体在关键超导过渡温度下的电子特异性热中显示了无处不在的不连续跳跃。然而,在不断增长的非常规的超导体中,第二阶参数分量可能会稳定下来,并在较低温度下产生第二次热容量跳跃,通常与时间转换对称性的自发断裂有关。可以通过外部扰动(例如化学替代,静水压力或单轴菌株)来控制两个特定的热量不连续性。我们开发了一个理论定量的多波段框架,以确定带有频带结构和顺序参数动量结构的热容量跳跃的比率。我们讨论了确定第二个跳跃幅度的间隙曲线的条件。我们将形式主义应用于SR $ _2 $ ruo $ _4 $的情况,并使用微观随机相位近似计算中的间隙函数,我们表明最近出现的意外意外退化订单参数可能会表现出严重抑制的第二热容量跳跃。我们讨论了该结果的起源,并还考虑了空间不均匀性在特定热量中的作用。我们的结果提供了一个可能的解释,说明了为什么第二次热容量跳跃已经逃避了SR $ _2 $ ruo $ _4 $的实验检测。
Standard superconductors display a ubiquitous discontinuous jump in the electronic specific heat at the critical superconducting transition temperature. In a growing class of unconventional superconductors, however, a second order parameter component may get stabilized and produce a second heat capacity jump at a lower temperature, typically associated with the spontaneous breaking of time-reversal symmetry. The splitting of the two specific heat discontinuities can be controlled by external perturbations such as chemical substitution, hydrostatic pressure, or uniaxial strain. We develop a theoretical quantitative multi-band framework to determine the ratio of the heat capacity jumps, given the band structure and the order parameter momentum structure. We discuss the conditions of the gap profile which determine the amplitude of the second jump. We apply our formalism to the case of Sr$_2$RuO$_4$, and using the gap functions from a microscopic random phase approximation calculation, we show that recently-proposed accidentally degenerate order parameters may exhibit a strongly suppressed second heat capacity jump. We discuss the origin of this result and consider also the role of spatial inhomogeneity on the specific heat. Our results provide a possible explanation of why a second heat capacity jump has so far evaded experimental detection in Sr$_2$RuO$_4$.