论文标题

在平方晶格上的光激发莫特绝缘子中,激子辅助低能磁激励

Exciton-assisted low-energy magnetic excitations in a photoexcited Mott insulator on a square lattice

论文作者

Tsutsui, Kenji, Shinjo, Kazuya, Sota, Shigetoshi, Tohyama, Takami

论文摘要

正方形晶格上的莫特绝缘子的光激发会削弱单个和两麦克诺族激发的强度,如在时间分辨的谐振弹性X射线散射和时间分辨的拉曼散射中所观察到的。但是,尚未清楚地理解低能量区域的低能区域的光谱变化。为了揭示莫特绝缘子的光诱导的低能磁激励的性质,我们在数值上研究了正方形晶格上光激发半充满半填充的哈伯德模型中的瞬时磁动力学。关闭调谐以获得吸收边缘的泵脉冲后,新的磁信号在单磁和两麦克努子激发中显然出现了远低于镁能。我们发现低能激发主要是通过吸收边缘的激子状态产生的。这些激发量辅助的磁激发可能可以为低能光谱重量提供可能的解释。

The photoexcitation of a Mott insulator on a square lattice weakens the intensity of both single- and two-magnon excitations as observed in time-resolved resonant-inelastic X-ray scattering and time-resolved Raman scattering, respectively. However, the spectral changes in the low-energy regions below the magnons have not yet been clearly understood. To uncover the nature of the photoinduced low-energy magnetic excitations of the Mott insulator, we numerically investigate the transient magnetic dynamics in a photoexcited half-filled Hubbard model on a square lattice. After turning off a pump pulse tuned for an absorption edge, new magnetic signals clearly emerge well below the magnon energy in both single- and two-magnon excitations. We find that the low-energy excitations are predominantly created via excitonic states at the absorption edge. These exciton-assisted magnetic excitations may provide a possible explanation for the low-energy spectral weight in a recent time-resolved two-magnon Raman scattering experiment for insulating YBa$_2$Cu$_3$O$_{6.1}$.

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