论文标题
北极星传播和相互作用的超快成像
Ultrafast imaging of polariton propagation and interactions
论文作者
论文摘要
半导体激发可以与空腔光子杂交,形成具有显着特性的激子 - 摩尔体子(EP),包括光明的能量流,结合了物质样相互作用。为了充分利用这些特性,尽管与晶格声子进行了物质介导的相互作用,但EP必须保留弹道,连贯的运输。在这里,我们开发了一种非线性动量分辨的光学方法,该方法在一系列极化体系结构中直接在飞秒尺度上的真实空间中图像EP。我们将分析重点放在分层卤化物钙钛矿微腔中的EP传播上。我们揭示了ep-phonon相互作用导致在室温下高激激分级分的EP速度的重新归一化。尽管存在这些强烈的ep-phonon相互作用,但最多可维持弹道传输,最多可用于半外EPS,这与通过轻型杂交屏蔽动态障碍的量子模拟一致。高于50%的激子特征,快速的分解性会导致扩散运输。我们的工作提供了一个一般框架,以精确平衡EP连贯性,速度和非线性相互作用。
Semiconductor excitations can hybridize with cavity photons to form exciton-polaritons (EPs) with remarkable properties, including light-like energy flow combined with matter-like interactions. To fully harness these properties, EPs must retain ballistic, coherent transport despite matter-mediated interactions with lattice phonons. Here we develop a nonlinear momentum-resolved optical approach that directly images EPs in real space on femtosecond scales in a range of polaritonic architectures. We focus our analysis on EP propagation in layered halide perovskite microcavities. We reveal that EP-phonon interactions lead to a large renormalization of EP velocities at high excitonic fractions at room temperature. Despite these strong EP-phonon interactions, ballistic transport is maintained for up to half-exciton EPs, in agreement with quantum simulations of dynamic disorder shielding through light-matter hybridization. Above 50% excitonic character, rapid decoherence leads to diffusive transport. Our work provides a general framework to precisely balance EP coherence, velocity, and nonlinear interactions.