论文标题
超导圆顶内抗铁磁量子临界点的热力学特征
Thermodynamic signatures of an antiferromagnetic quantum critical point inside a superconducting dome
论文作者
论文摘要
最近在非常规超导体,特别是铁基材料的实验报告了抗铁磁量子临界点(AFM-QCP)的证据,该临界点(AFM-QCP)在相图的超导圆顶内出现。与此类AFM-QCP相关的波动有望促进热力学量的异常温度依赖性。在这里,我们计算了特定的热量$ c(t)$的$ t依赖性,因为随着AFM-QCP接近,完全间隙$ s^{+ - } $超导状态。我们发现,在AFM-QCP上,特定的热量$ c(t)$随温度二次消失,而不是在完全开发的BCS超导体中看到的典型指数抑制。这种稳健的结果是由于对SC状态下的骨(AFM)传播剂的一般形式产生的自由能的非分析贡献。远离AFM-QCP,随着温度的降低,$ c(t)$显示了从$ t^2 $行为到指数行为的交叉,其交叉温度尺度由超导间隙的值和QCP的距离设置。我们认为,特定热中的这些特征可用于明确确定AFM-QCP在铁基和其他完全损失的非常规超导体的超导圆顶内的存在。
Recent experiments in unconventional superconductors, and in particular iron-based materials, have reported evidence of an antiferromagnetic quantum critical point (AFM-QCP) emerging inside the superconducting dome of the phase diagram. Fluctuations associated with such an AFM-QCP are expected to promote unusual temperature dependencies of thermodynamic quantities. Here, we compute the $T$ dependence of the specific heat $C(T)$ deep inside a fully gapped $s^{+-}$ superconducting state as the AFM-QCP is approached. We find that, at the AFM-QCP, the specific heat $C(T)$ vanishes quadratically with temperature, as opposed to the typical exponential suppression seen in fully-gapped BCS superconductors. This robust result is due to a non-analytic contribution to the free-energy arising from the general form of the bosonic (AFM) propagator in the SC state. Away from the AFM-QCP, as temperature is lowered, $C(T)$ shows a crossover from a $T^2$ behavior to an exponential behavior, with the crossover temperature scale set by the value of the superconducting gap and the distance to the QCP. We argue that these features in the specific heat can be used to unambiguously determine the existence of AFM-QCPs inside the superconducting domes of iron-based and other fully gapped unconventional superconductors.