论文标题
超临界量子气体的耗散蒸馏
Dissipative Distillation of Supercritical Quantum Gases
论文作者
论文摘要
我们在实验上实现了一种产生非平衡bose爱因斯坦冷凝水的方法,其冷凝分数超过了具有相同参数的平衡样品的方法。为此,我们将87RB的超电压玻色气体浸入39K的云中,温度明显更高,提供了受控的耗散来源。通过将耗散环境的作用与蒸发冷却相结合,我们能够从热云中逐渐散布非平衡的玻色 - 内斯坦冷凝物。我们表明,通过增加耗散的强度,甚至可以产生高于临界温度的冷凝水。我们最终证明了我们的平衡样品长期寿命,并且在我们实验可访问的时间内不达到平衡。由于其高度控制,我们的蒸馏过程是开放量子系统工程的有前途的工具。
We experimentally realize a method to produce non-equilibrium Bose Einstein condensates with condensed fraction exceeding those of equilibrium samples with the same parameters. To do this, we immerse an ultracold Bose gas of 87Rb in a cloud of 39K with substantially higher temperatures, providing a controlled source of dissipation. By combining the action of the dissipative environment with evaporative cooling, we are able to progressively distil the non-equilibrium Bose-Einstein condensate from the thermal cloud. We show that by increasing the strength of the dissipation it is even possible to produce condensates above the critical temperature. We finally demonstrate that our out-of-equilibrium samples are long-lived and do not reach equilibrium in a time that is accessible for our experiment. Due to its high degree of control, our distillation process is a promising tool for the engineering of open quantum systems.