论文标题
二维费米气体中的声音传播和量子有限阻尼
Sound propagation and quantum limited damping in a two-dimensional Fermi gas
论文作者
论文摘要
由于强烈的局部相关性和增强的远距离波动的相互作用,二维二维费米系统是多体物理学的剩余挑战之一。在这里,我们通过研究声音模式的传播和阻尼,探测了2D费米气体在BEC-BCS跨界跨BEC-BCS跨界的热力学和运输特性。我们通过将相位步长印在盒子电位中的均匀的费米气体上,并从所得密度振荡的频率中提取声速,从而激发粒子电流。我们测量了跨BEC-BCS交叉的声音速度,并根据记录密度曲线和量子蒙特卡洛计算,将状态方程与静态测量的产生动态测量进行比较,并找到所有三个之间的合理一致性。我们还测量了声音模式的阻尼,该模式由剪切和块状粘度以及气体的导热率确定。我们发现,在强烈相互作用的态度中,阻尼是最小的,而扩散率接近了完美流体的通用量子结合的$ \ hbar/m $。
Strongly interacting two-dimensional Fermi systems are one of the great remaining challenges in many-body physics due to the interplay of strong local correlations and enhanced long-range fluctuations. Here, we probe the thermodynamic and transport properties of a 2D Fermi gas across the BEC-BCS crossover by studying the propagation and damping of sound modes. We excite particle currents by imprinting a phase step onto homogeneous Fermi gases trapped in a box potential and extract the speed of sound from the frequency of the resulting density oscillations. We measure the speed of sound across the BEC-BCS crossover and compare the resulting dynamic measurement of the equation of state both to a static measurement based on recording density profiles and to Quantum Monte Carlo calculations and find reasonable agreement between all three. We also measure the damping of the sound mode, which is determined by the shear and bulk viscosities as well as the thermal conductivity of the gas. We find that the damping is minimal in the strongly interacting regime and the diffusivity approaches the universal quantum bound $\hbar/m$ of a perfect fluid.