论文标题

石墨中现场诱导的相变的广泛关键波动

Wide critical fluctuations of the field-induced phase transition in graphite

论文作者

Marcenat, Christophe, Klein, Thierry, LeBoeuf, David, Jaoui, Alexandre, Seyfarth, Gabriel, Kačmarčík, Jozef, Kohama, Yoshimitsu, Cercellier, Hervé, Aubin, Hervé, Behnia, Kamran, Fauqué, Benoît

论文摘要

在相变的临界温度(t $ _C $)附近,订单参数有波动,它驻留于平均场近似值之外。与高斯波动相比,这种关键波动通常发生在非常狭窄的温度窗口中。在这里,我们报告了一项针对高磁场的石墨中特定热量的研究,当所有载体限制在最低的兰道水平上时。在温度和场扫描中观察到BCS样特异性热跳,这表明几十年前在石墨中发现的相变是二阶的。跳跃之前是电子特异性热的稳定场引起的增强。磁场振幅(从33 t到27 t)的幅度降低(20%)导致t $ _c $的三倍降低,并且特定的热异常的急剧扩大,从而使尾巴扩散到两倍T $ _c $。我们认为,与平均野外BCS行为的稳定偏离是这种稀有金属中异常大的金茨堡数字的结果,该金属随着田地的降低而稳步增长。我们对关键波动的适合表明,它们属于$ 3DXY $通用类别,类似于$^4 $ he He Superfluid过渡的情况。

In the immediate vicinity of the critical temperature (T$_c$) of a phase transition, there are fluctuations of the order parameter, which reside beyond the mean-field approximation. Such critical fluctuations usually occur in a very narrow temperature window in contrast to Gaussian fluctuations. Here, we report on a study of specific heat in graphite subject to high magnetic field when all carriers are confined in the lowest Landau levels. The observation of a BCS-like specific heat jump in both temperature and field sweeps establishes that the phase transition discovered decades ago in graphite is of the second-order. The jump is preceded by a steady field-induced enhancement of the electronic specific heat. A modest (20 percent) reduction in the amplitude of the magnetic field (from 33 T to 27 T) leads to a threefold decrease of T$_c$ and a drastic widening of the specific heat anomaly, which acquires a tail spreading to two times T$_c$. We argue that the steady departure from the mean-field BCS behavior is the consequence of an exceptionally large Ginzburg number in this dilute metal, which grows steadily as the field lowers. Our fit of the critical fluctuations indicates that they belong to the $3DXY$ universality class, similar to the case of $^4$He superfluid transition.

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