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通过工程限制增强室温WS₂极化激元的基态布居和宏观相干性。

Enhancing Ground-State Population and Macroscopic Coherence of Room-Temperature WS_{2} Polaritons through Engineered Confinement.

作者信息

Wurdack M, Estrecho E, Todd S, Schneider C, Truscott A G, Ostrovskaya E A

机构信息

ARC Centre of Excellence in Future Low-Energy Electronics Technologies and Department of Quantum Science and Technology, Research School of Physics, The Australian National University, Canberra, ACT 2601, Australia.

Institut für Physik, Carl von Ossietzky Universität Oldenburg, Ammerländer Heerstraße 114-118, 26126 Oldenburg, Germany.

出版信息

Phys Rev Lett. 2022 Sep 30;129(14):147402. doi: 10.1103/PhysRevLett.129.147402.

Abstract

Exciton polaritons (polaritons herein) in transition-metal dichalcogenide monolayers have attracted significant attention due to their potential for polariton-based optoelectronics. Many of the proposed applications rely on the ability to trap polaritons and to reach macroscopic occupation of their ground energy state. Here, we engineer a trap for room-temperature polaritons in an all-dielectric optical microcavity by locally increasing the interactions between the WS_{2} excitons and cavity photons. The resulting confinement enhances the population and the first-order coherence of the polaritons in the ground state, with the latter effect related to dramatic suppression of disorder-induced inhomogeneous dephasing. We also demonstrate efficient population transfer into the trap when optically injecting free polaritons outside of its periphery.

摘要

过渡金属二硫属化物单层中的激子极化激元(以下简称极化激元)因其在基于极化激元的光电子学方面的潜力而备受关注。许多提出的应用都依赖于捕获极化激元并使其基态达到宏观占据的能力。在此,我们通过局部增强WS₂激子与腔光子之间的相互作用,在全介质光学微腔中设计了一种用于室温极化激元的陷阱。由此产生的限制增强了基态极化激元的布居数和一阶相干性,后一种效应与无序诱导的非均匀退相的显著抑制有关。我们还展示了在陷阱外围之外光学注入自由极化激元时,能有效地将布居数转移到陷阱中。

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