Liang Shuang, Zhang Deping, Chen Wei
Department of Physics, Nanjing University and National Laboratory of Solid State Microstructures, Nanjing 210093, People's Republic of China.
J Phys Condens Matter. 2019 May 8;31(18):185601. doi: 10.1088/1361-648X/ab04be. Epub 2019 Feb 6.
We study the one-dimensional Fermionic Hubbard model with [Formula: see text] spin symmetry in the incommensurate filling case. The basic properties of Green's function, momentum distribution and tunneling density of states of the system at low temperature are studied in the frame work of Luttinger liquid theory combined with Bethe Ansatz solutions for arbitrary interaction. In the strong interacting case, the system enters the spin-incoherent regime at intermediate temperature [Formula: see text] and we obtain the Green's function and tunneling density of states by generalizing the path integral approach for the [Formula: see text] case to the [Formula: see text] case in this regime. The theoretical results we obtained agree qualitatively with the experiments on the one-dimensional alkaline earth atomic system with [Formula: see text] spin symmetry. The similarities and difference between the one-dimensional [Formula: see text] Fermionic Hubbard system at large N and the one-dimensional spinless Bosonic system are also investigated.
我们研究了在非 commensurate 填充情况下具有[公式:见文本]自旋对称性的一维费米子哈伯德模型。在卢廷格液体理论框架下,结合任意相互作用的贝塞耳假设解,研究了该系统在低温下格林函数、动量分布和隧穿态密度的基本性质。在强相互作用情况下,系统在中间温度[公式:见文本]进入自旋非相干区域,我们通过将[公式:见文本]情形的路径积分方法推广到该区域的[公式:见文本]情形,得到了格林函数和隧穿态密度。我们得到的理论结果与具有[公式:见文本]自旋对称性的一维碱土原子系统的实验定性相符。还研究了大 N 时的一维[公式:见文本]费米子哈伯德系统与一维无自旋玻色子系统之间的异同。