Effect of phase string on single-hole dynamics in the two-leg Hubbard ladder

K. Shinjo, S. Sota, T. Tohyama
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引用次数: 4

Abstract

Optical measurements in doped Mott insulators have discovered the emergence of spectral weights at mid-infrared (MIR) upon chemical- and photo-doping. MIR weights may have a relation to string-type excitation of spins, which is induced by a doped hole generating miss-arranged spins with respect to their sublattice. There are two types of string effects: one is $S^z$ string that is repairable by quantum spin flips and the other is phase string irreparable by the spin flips. We investigate the effect of $S^{z}$ and phase strings on MIR weights. Calculating the optical conductivity of single-hole Hubbard and $t$-$J$ models on two-leg ladders by using time-dependent Lanczos and density-matrix renormalization group, we find that phase strings make a crucial effect on the emergence of MIR weights as compared with $S^{z}$ strings. Our findings indicate that a mutual Chern-Simons gauge field acting between spin and charge degrees of freedom, which is the origin of phase strings, is significant for obtaining MIR weights. Conversely, if we remove this gauge field, no phase is picked up by a doped hole. As a result, a spin-polaron accompanied by a local spin distortion emerges and a quasiparticle with a cosine-like energy dispersion is formed in single-particle spectral function. Furthermore, we suggest a Floquet engineering to examine the phase-string effect in cold atoms.
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相柱对两腿Hubbard梯单孔动力学的影响
对掺杂的莫特绝缘体进行光学测量,发现化学和光掺杂后中红外(MIR)光谱权重的出现。MIR的权重可能与自旋的弦型激发有关,这是由掺杂空穴产生的自旋相对于它们的亚晶格排列错误引起的。有两种类型的弦效应:一种是可以通过量子自旋翻转修复的S^z弦,另一种是无法通过自旋翻转修复的相弦。我们研究了$S^{z}$和相位串对MIR权值的影响。利用随时间变化的Lanczos和密度矩阵重正化群计算了单孔Hubbard和$t$-$J$模型在两腿梯上的光学电导率,我们发现与$S^{z}$弦相比,相位弦对MIR权值的出现有重要影响。我们的研究结果表明,作用于自旋自由度和电荷自由度之间的相互chen - simons规范场是相位串的起源,对于获得MIR权重是重要的。相反,如果我们去除这个规范场,则没有相位被掺杂孔拾取。结果,在单粒子谱函数中出现了伴随局部自旋畸变的自旋极化子,形成了具有余弦类能量色散的准粒子。此外,我们提出了一种Floquet工程来研究冷原子中的相弦效应。
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