论文标题
Bose Polaron的相互作用在腔耦合单层半导体中
Bose polaron interactions in a cavity-coupled monolayer semiconductor
论文作者
论文摘要
移动量子杂质与骨气浴之间的相互作用导致形成的准粒子,称为Bose Polarom。玻色极性子的基本特性,例如它们的相互作用,可能与裸杂质的基本特性截然不同。在这里,我们通过将$σ^ - $σ^ - $偏光型激子杂质注入相干$σ^+$极化极化物所产生的$σ^ - $σ^ - $σ^ - $σ^ - $σ^ - $σ^ - $σ^ - $σ^ - $σ^ - $σ^ - 偏光式极化层,由单层激光产生的单层摩西$ _2 $ _2 $ embedded中的共振激光激发产生的$ _2^+$ polarpolations,在这里探索了Bose Polaron物理学。通过利用杂质和浴极化子之间的Biexciton Feshbach共振,我们将相互作用的系统调整为强耦合方案,并证明了两个新的准粒子分支的共存。使用时间分辨的泵探针测量,我们观察到北极子敷料如何修饰杂质极性子之间的相互作用。值得注意的是,我们发现高能极性层状粒子(对于小浴室占用率)之间的相互作用在强大的杂质 - 浴偶联方向上可能会变得有吸引力。我们的实验在任何物理系统中都提供了对Bose Polaron-Polaron相互作用强度的首次直接测量,并为探索和控制驱动驱动性环境中多体相关性的方式铺平了道路。
The interaction between a mobile quantum impurity and a bosonic bath leads to the formation of quasiparticles, termed Bose polarons. The elementary properties of Bose polarons, such as their mutual interactions, can differ drastically from those of the bare impurities. Here, we explore Bose polaron physics in a two-dimensional nonequilibrium setting by injecting $σ^-$ polarised exciton-polariton impurities into a bath of coherent $σ^+$ polarised polaritons generated by resonant laser excitation of monolayer MoSe$_2$ embedded in an optical cavity. By exploiting a biexciton Feshbach resonance between the impurity and the bath polaritons, we tune the interacting system to the strong-coupling regime and demonstrate the coexistence of two new quasiparticle branches. Using time-resolved pump-probe measurements we observe how polaron dressing modifies the interaction between impurity polaritons. Remarkably, we find that the interactions between high-energy polaron quasiparticles, that are repulsive for small bath occupancy, can become attractive in the strong impurity-bath coupling regime. Our experiments provide the first direct measurement of Bose polaron-polaron interaction strength in any physical system and pave the way for exploration and control of many-body correlations in driven-dissipative settings.