论文标题

观察光量子气中的非铁相变

Observation of a non-Hermitian phase transition in an optical quantum gas

论文作者

Öztürk, Fahri Emre, Lappe, Tim, Hellmann, Göran, Schmitt, Julian, Klaers, Jan, Vewinger, Frank, Kroha, Johann, Weitz, Martin

论文摘要

光的量子气体是光子微腔中的光子或偏振子冷凝物,是集体量子系统,可从例如腔损失。这使它们成为研究耗散阶段的工具,这是量子许多物理学中新兴的主题。在这里,我们在实验上证明了光子玻色的凝结物向新的耗散相的非热相变,其特征在于冷凝水的二阶相干性的biexpenential衰减。相变是由于量子气中出现特殊点的出现而发生的。虽然Bose-Einstein凝结通常通过平滑的交叉连接到普通激光,但观察到的相变会使新颖的biexpention阶段与激光和中间体振动性冷凝物状态分开。我们的发现为研究广泛的耗散量子阶段的研究铺平了道路,例如在拓扑或晶格系统中。

Quantum gases of light, as photons or polariton condensates in optical microcavities, are collective quantum systems enabling a tailoring of dissipation from e.g. cavity loss. This makes them a tool to study dissipative phases, an emerging subject in quantum manybody physics. Here we experimentally demonstrate a non-Hermitian phase transition of a photon Bose-Einstein condensate to a new dissipative phase, characterized by a biexponential decay of the condensate's second-order coherence. The phase transition occurs due to the emergence of an exceptional point in the quantum gas. While Bose-Einstein condensation is usually connected to ordinary lasing by a smooth crossover, the observed phase transition separates the novel, biexponential phase from both lasing and an intermediate, oscillatory condensate regime. Our findings pave the way for studies of a wide class of dissipative quantum phases, for instance in topological or lattice systems.

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