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强阻塞里德堡气体的自发雪崩电离

Spontaneous avalanche ionization of a strongly blockaded Rydberg gas.

作者信息

Robert-de-Saint-Vincent M, Hofmann C S, Schempp H, Günter G, Whitlock S, Weidemüller M

机构信息

Physikalisches Institut, Universität Heidelberg, Im Neuenheimer Feld 226, 69120 Heidelberg, Germany.

出版信息

Phys Rev Lett. 2013 Jan 25;110(4):045004. doi: 10.1103/PhysRevLett.110.045004. Epub 2013 Jan 24.

Abstract

We report the sudden and spontaneous evolution of an initially correlated gas of repulsively interacting Rydberg atoms to an ultracold plasma. Under continuous laser coupling we create a Rydberg ensemble in the strong blockade regime, which at longer times undergoes an ionization avalanche. By combining optical imaging and ion detection, we access the full information on the dynamical evolution of the system, including the rapid increase in the number of ions and a sudden depletion of the Rydberg and ground state densities. Rydberg-Rydberg interactions are observed to strongly affect the dynamics of plasma formation. Using a coupled rate-equation model to describe our data, we extract the average energy of electrons trapped in the plasma, and an effective cross section for ionizing collisions between Rydberg atoms and atoms in low-lying states. Our results suggest that the initial correlations of the Rydberg ensemble should persist through the avalanche. This would provide the means to overcome disorder-induced heating, and offer a route to enter new strongly coupled regimes.

摘要

我们报告了一个最初由相互排斥作用的里德堡原子组成的关联气体突然且自发地演变为超冷等离子体的过程。在连续激光耦合作用下,我们在强阻塞区域创建了一个里德堡原子系综,该系综在较长时间后会经历电离雪崩。通过结合光学成像和离子检测,我们获取了关于系统动态演化的完整信息,包括离子数量的快速增加以及里德堡原子和基态密度的突然耗尽。我们观察到里德堡 - 里德堡相互作用对等离子体形成的动力学有强烈影响。使用耦合速率方程模型来描述我们的数据,我们提取了捕获在等离子体中的电子的平均能量,以及里德堡原子与低能态原子之间电离碰撞的有效截面。我们的结果表明,里德堡原子系综的初始关联应在雪崩过程中持续存在。这将提供克服无序诱导加热的方法,并为进入新的强耦合区域提供一条途径。

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