论文标题

非线性等离子体腔中的激子 - 平面极化状态促进的退化参数下转换

Degenerate parametric down-conversion facilitated by exciton-plasmon polariton states in nonlinear plasmonic cavity

论文作者

Piryatinski, Andrei, Sukharev, Maxim

论文摘要

我们研究了退化参数下转换(DPDC)在两级量子发射器(QES)的集合中,通过近场相互作用与非线性等离子型腔的单个表面等离子体(SP)模式相连。为此,我们开发了一个量子驱动的模型,该模型捕获了系统的非平衡动力学,其中不连贯的泵送QE的过渡频率在SPS的第二谐波响应附近调节。考虑到强大的耦合方案,即SP-QE相互作用速率超过了系统耗散率,我们发现归因于正常稳态和激光稳态之间的相变归因于临界SP-QE耦合。检查系统稳态上方的波动,我们预测了新的基本激发,即由QES的两种量子量子和单位型状态形成的激子 - 平面极化子。两-SP量子的贡献导致SP-QE相互作用速率与QE的数量,$ {\ cal n} _O $的线性缩放,而不是$ \ sqrt {{\ cal n} _O} $ - 以Dicke和Tavis-Cummings模型而闻名。我们进一步研究了SP-QE相互作用缩放如何影响临界耦合附近的极化子分散和功率谱。为此,我们比较假设QE的有限合奏和模型热力学极限的计算结果。计算出的功率谱预测了QE在第二谐波频率附近的相干光子发射的相互作用,并在基本频率下通过SPS在基本频率下发射(即光子DPDC效应)。

We study the effect of degenerate parametric down-conversion (DPDC) in an ensemble of two-level quantum emitters (QEs) coupled via near-field interactions to a single surface plasmon (SP) mode of a nonlinear plasmonic cavity. For this purpose, we develop a quantum driven-dissipative model capturing non-equilibrium dynamics of the system in which incoherently pumped QEs have transition frequency tuned near the second-harmonic response of the SPs. Considering the strong coupling regime, i.e., the SP-QE interaction rate exceeds system dissipation rates, we find a critical SP-QE coupling attributed to the phase transition between normal and lasing steady states. Examining fluctuations above the system's steady states, we predict new elementary excitations, namely, the exciton-plasmon polaritons formed by the two-SP quanta and single-exciton states of QEs. The contribution of two-SP quanta results in the linear scaling of the SP-QE interaction rate with the number of QEs, ${\cal N}_o$, as opposed to the $\sqrt{{\cal N}_o}$-scaling known for the Dicke and Tavis-Cummings models. We further examine how SP-QE interaction scaling affects the polariton dispersions and power spectra in the vicinity of the critical coupling. For this purpose, we compare the calculation results assuming a finite ensemble of QEs and the model thermodynamic limit. The calculated power spectra predict an interplay of coherent photon emission by QEs near the second-harmonic frequency and correlated photon-pair emission at the fundamental frequency by the SPs (i.e., the photonic DPDC effect).

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