论文标题

Isospin Pomeranchuk效应和扭曲双层石墨烯中集体激发的熵

Isospin Pomeranchuk effect and the entropy of collective excitations in twisted bilayer graphene

论文作者

Saito, Yu, Yang, Fangyuan, Ge, Jingyuan, Liu, Xiaoxue, Watanabe, Kenji, Taniguchi, Takashi, Li, J. I. A., Berg, Erez, Young, Andrea F.

论文摘要

在冷凝物质系统中,较高的温度通常会分离有序阶段,从而导致磁性,超导性和其他现象的临界温度上限。一个值得注意的例外是pomeranchuk效应3HE,其中液态基态在由于顺磁性固相的大熵而增加温度后冻结。在这里,我们表明一种类似的机制描述了魔术角扭曲的双层石墨烯中自旋和山谷 - 词素的有限温度动力学。尽管没有出现在低温极限中,但最引人注目的电阻率峰在高温填充因子NU = -1附近出现,尽管没有相应相关相。平面磁矩的倾斜磁场转移和热力学测量结果表明,电阻率峰绝热连接到有限的场磁相变,该系统在该系统中会形成有限的同胞蛋白极化。这些数据表明了pomeranchuk型机制,其中铁磁相中的异种量无序力矩的熵相对于在升高温度下的同胞蛋白未熟化的费米液相稳定下来。 S/KB的熵测量确实发现它是每个单位细胞区域的统一统一,可测量的部分被平面磁场抑制,与无序物理旋转的贡献一致。但是,与3e相反,在此转变的热力学量中未观察到不连续性。我们的发现暗示了一个小的同胞刚度,对有限温度传输的性质以及扭曲的双层石墨烯和相关系统中的同胞序列和超导性的机制具有影响。

In condensed matter systems, higher temperatures typically disfavors ordered phases leading to an upper critical temperature for magnetism, superconductivity, and other phenomena. A notable exception is the Pomeranchuk effect in 3He, in which the liquid ground state freezes upon increasing the temperature due to the large entropy of the paramagnetic solid phase. Here we show that a similar mechanism describes the finite temperature dynamics of spin and valley-isospins in magic-angle twisted bilayer graphene. Most strikingly a resistivity peak appears at high temperatures near superlattice filling factor nu = -1, despite no signs of a commensurate correlated phase appearing in the low-temperature limit. Tilted field magnetotransport and thermodynamic measurements of the inplane magnetic moment show that the resistivity peak is adiabatically connected to a finite-field magnetic phase transition at which the system develops finite isospin polarization. These data are suggestive of a Pomeranchuk-type mechanism, in which the entropy of disordered isospin moments in the ferromagnetic phase stabilizes it relative to an isospin unpolarized Fermi liquid phase at elevated temperatures. Measurements of the entropy, S/kB indeed find it to be of order unity per unit cell area, with a measurable fraction that is suppressed by an in-plane magnetic field consistent with a contribution from disordered physical spins. In contrast to 3He, however, no discontinuities are observed in the thermodynamic quantities across this transition. Our findings imply a small isospin stiffness, with implications for the nature of finite temperature transport as well as the mechanisms underlying isospin ordering and superconductivity in twisted bilayer graphene and related systems.

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