论文标题

Floquet Engineering对光学非线性的巨大调制

Giant modulation of optical nonlinearity by Floquet engineering

论文作者

Shan, Jun-Yi, Ye, M., Lee, Sungmin, Park, Je-Geun, Balents, L., Hsieh, D.

论文摘要

强烈的光线驾驶具有光的潜力,可以连贯操纵超快时间标准上量子材料的性能。最近,通过光学诱导非平凡的带拓扑,新兴的自旋相互作用甚至超导性,出现了策略,从而极大地改变了电子和磁性。但是,按需进行工程光学性能的前景和方法知之甚少。在这里,我们证明了在范德华分层磁绝缘子Trisulfide(MNPS $ _3 $)中对光学非线性的连贯控制和巨大调制。通过从最低的现场锰$ d $ -D $过渡驱动远距离谐波,我们观察到其光学第二次谐波发电效率的连贯开关,在100秒的时间范围内,没有可测量的耗散。在驾驶10 $^9 $伏特的电场时,开关比率超过10,仅受样本损坏阈值的限制。基于MNPS $ _3 $的单离子模型的Floquet理论计算能够重现效果的测得的驱动场振幅和极化依赖性。我们的方法可以应用于广泛的绝缘材料,并可能导致动态设计的非线性光学元件。

Strong periodic driving with light offers the potential to coherently manipulate the properties of quantum materials on ultrafast timescales. Recently, strategies have emerged to drastically alter electronic and magnetic properties by optically inducing non-trivial band topologies, emergent spin interactions and even superconductivity. However, the prospects and methods of coherently engineering optical properties on demand are far less understood. Here we demonstrate coherent control and giant modulation of optical nonlinearity in a van der Waals layered magnetic insulator, manganese phosphorus trisulfide (MnPS$_3$). By driving far off-resonance from the lowest on-site manganese $d$-$d$ transition, we observe a coherent on-off switching of its optical second harmonic generation efficiency on the timescale of 100 femtoseconds with no measurable dissipation. At driving electric fields of the order of 10$^9$ volts per metre, the on-off ratio exceeds 10, which is limited only by the sample damage threshold. Floquet theory calculations based on a single-ion model of MnPS$_3$ are able to reproduce the measured driving field amplitude and polarization dependence of the effect. Our approach can be applied to a broad range of insulating materials and could lead to dynamically designed nonlinear optical elements.

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