Observation of Exciton Polariton Condensation in a Perovskite Lattice at Room Temperature
Rui Su, Sanjib Ghosh, Sheng Liu, Carole Diederichs, Timothy C.H. Liew,, Qihua Xiong

TL;DR
This paper reports the first observation of exciton polariton condensation in a room-temperature lead halide perovskite lattice, demonstrating potential for quantum simulation applications without the need for ultracold temperatures.
Contribution
It introduces a novel room-temperature polariton condensate in a strong perovskite lattice with large bandgap and band width, advancing quantum simulation technology.
Findings
Polariton condensation observed at room temperature.
Large bandgap and band width in the perovskite lattice.
Long-range spatial coherence of polaritons.
Abstract
Bose-Einstein condensation in strongly correlated lattices provides the possibility to coherently generate macroscopic quantum states, which have attracted tremendous attention as ideal platforms for quantum simulation. Ultracold atoms in optical lattices are one of such promising systems, where their realizations of different phases of matter exhibit promising applications in condensed matter physics, chemistry, and cosmology. Nevertheless, this is only accessible with ultralow temperatures in the nano to micro Kelvin scale set by the typical inverse mass of an atom. Alternative systems such as lattices of trapped ions and superconducting circuit arrays also rely on ultracold temperatures. Exciton polaritons with extremely light effective mass, are regarded as promising alternatives to realize Bose-Einstein condensation in lattices at higher temperatures. Along with the condensation,…
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Taxonomy
TopicsStrong Light-Matter Interactions · Social Media and Politics · Perovskite Materials and Applications
