论文标题
照片诱导的$η$ - 在有限温度下
Photoinduced $η$-pairing at finite temperatures
论文作者
论文摘要
我们在数值上证明了在零和有限温度下在半充满费米子哈伯德链中进行的$η$。结果是通过将基于基于矩阵的无限时间变化的块状分解技术和纯化方法组合而获得的结果,适用于热力学极限。通过PEIERLS阶段停靠的激光电场激发Mott绝缘子,我们跟踪相关的多体系统的时间进化,并确定$η$ PAIR相关功能在零和低温下在激光泵期间占主导地位的最佳参数集。这些相关性在较高的温度和脉冲照射后长时间消失。在高激光频率强库仑耦合方案中,如果哈伯德相互作用大约是激光频率的倍数,则在高温下也观察到了布里鲁因区边界对相关功能的残余增强,这可以归因于虚拟浮球状态下增强的双重占用。
We numerically prove photoinduced $η$-pairing in a half-filled fermionic Hubbard chain at both zero and finite temperature. The result, obtained by combining the matrix-product-state based infinite time-evolving block decimation technique and the purification method, applies to the thermodynamic limit. Exciting the Mott insulator by a laser electric field docked on via the Peierls phase, we track the time-evolution of the correlated many-body system and determine the optimal parameter set for which the nonlocal part of the $η$-pair correlation function becomes dominant during the laser pump at zero and low temperatures. These correlations vanish at higher temperatures and long times after pulse irradiation. In the high laser frequency strong Coulomb coupling regime we observe a remnant enhancement of the Brillouin-zone boundary pair-correlation function also at high temperatures, if the Hubbard interaction is about a multiple of the laser frequency, which can be attributed to an enhanced double occupancy in the virtual Floquet state.