论文标题

在受限制的驱动量子冷凝物中的临界波动

Critical fluctuations in a confined driven-dissipative quantum condensate

论文作者

Alnatah, Hassan, Comaron, Paolo, Mukherjee, Shouvik, Beaumariage, Jonathan, Pfeiffer, Loren N., West, Ken, Baldwin, Kirk, Szymańska, Marzena, Snoke, David W.

论文摘要

相位波动决定了量子冷凝水的低能特性。但是,在凝结阈值下,密度和相位波动都是相关的。尽管已经强烈重视了相波的研究,但远离临界点的量子系统的物理学主导了物理,即使在热平衡中,探索数量的探索也要少得多。在这项工作中,我们报告了在凝结阈值附近极化子的圆形非平衡玻色核凝结物中波动的实验观察和理论描述。我们观察到临界波动,结合了单模冷凝状态的数量波动和不同状态之间的竞争。后者类似于光子激光器中的模式。我们的理论分析表明,这种现象具有量子特征,而泵的经典噪声不足以解释实验。关键的量子状态竞争的表现为研究凝结物的形成提供了新的可能性,同时链接到光子激光器中的实际实现。

Phase fluctuations determine the low-energy properties of quantum condensates. However, at the condensation threshold, both density and phase fluctuations are relevant. While strong emphasis has been given to the investigation of phase fluctuations, which dominate the physics of the quantum system away from the critical point -- number fluctuations have been much less explored, even in thermal equilibrium. In this work, we report experimental observation and theoretical description of fluctuations in a circularly-confined non-equilibrium Bose-Einstein condensate of polaritons near the condensation threshold. We observe critical fluctuations, which combine the number fluctuations of a single-mode condensate state and competition between different states. The latter are analogous to mode hopping in photon lasers. Our theoretical analysis indicates that this phenomenon is of a quantum character, while classical noise of the pump is not sufficient to explain the experiments. The manifestation of a critical quantum state competition unlocks new possibilities for the study of condensate formation while linking to practical realizations in photonic lasers.

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