论文标题

在强光耦合下增强的光学非线性

Enhanced optical nonlinearities under strong light-matter coupling

论文作者

Ribeiro, Raphael F., Campos-Gonzalez-Angulo, Jorge A., Giebink, Noel C., Xiong, Wei, Yuen-Zhou, Joel

论文摘要

已经显示出光学微腔和金属纳米结构可显着调节分子系统的动力学和光谱反应。我们介绍了一项研究,该研究由$ n $ anharmonic多级系统(例如Morse振荡器)组成的模型的非线性光学器件进行集体强耦合与共振红外微腔。我们发现,在实验可访问的条件下,由于极性共振的高质量以及相对于自由空间的高质量电磁能密度,微腔中的分子系统可能具有非线性现象。当多极态与裸分子多光子过渡共鸣时,会特别增强多光子吸收。特别是,当Rabi拆分$ω_r$大约等于分子anharmonic Shift $2δ$时,我们的模型将通过几个数量级来预测,相对于自由空间的几个数量级可以预测两光子吸收横截面的增强。我们的结果为谐振非线性反应增强因子提供了粗糙的上限,因为对黑暗状态的松弛在现象学上是对待的。值得注意的是,两级系统与腔体(由Tavis-Cummings模型描述)的合奏没有显示出这种光学非线性增强功能,从而突出了多级Anharmonic Systems提供的丰富现象学。预计与我们的模型共享特征的激子系统(例如,具有可访问s_0-> s_1-> s_2转换的分子染料)并与UV可见型腔强烈相互作用。

Optical microcavities and metallic nanostructures have been shown to significantly modulate the dynamics and spectroscopic response of molecular systems. We present a study of the nonlinear optics of a model consisting of $N$ anharmonic multilevel systems (e.g., Morse oscillators) undergoing collective strong coupling with a resonant infrared microcavity. We find that, under experimentally accessible conditions, molecular systems in microcavities may have nonlinear phenomena significantly intensified due to the high quality of polariton resonances and the enhanced microcavity electromagnetic energy density relative to free space. Particularly large enhancement of multiphoton absorption happens when multipolariton states are resonant with bare molecule multiphoton transitions. In particular, our model predicts two-photon absorption cross section enhancements by several orders of magnitude relative to free space when the Rabi splitting $Ω_R$ is approximately equal to the molecular anharmonic shift $2Δ$. Our results provide rough upper bounds to resonant nonlinear response enhancement factors as relaxation to dark states is treated phenomenologically. Notably, ensembles of two-level systems undergoing strong coupling with a cavity (described by the Tavis-Cummings model) show no such optical nonlinearity enhancements, highlighting the rich phenomenology afforded by multilevel anharmonic systems. Similar conclusions are expected to hold for excitonic systems that share features with our model (e.g., molecular dyes with accessible S_0 -> S_1 -> S_2 transitions) and strongly interact with a UV-visible cavity.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源