Suppr超能文献

里德堡原子向超冷等离子体的自发演化。

Spontaneous evolution of rydberg atoms into an ultracold plasma.

作者信息

Robinson MP, Tolra BL, Noel MW, Gallagher TF, Pillet P

机构信息

Department of Physics, University of Virginia, Charlottesville, Virginia 22903, USA.

出版信息

Phys Rev Lett. 2000 Nov 20;85(21):4466-9. doi: 10.1103/PhysRevLett.85.4466.

Abstract

We have observed the spontaneous evolution of a dense sample of Rydberg atoms into an ultracold plasma, in spite of the fact that each of the atoms may initially be bound by up to 100 cm(-1). When the atoms are initially bound by 70 cm(-1), this evolution occurs when most of the atoms are translationally cold, <1 mK, but a small fraction, approximately 1%, is at room temperature. Ionizing collisions between hot and cold Rydberg atoms and blackbody photoionization produce an essentially stationary cloud of cold ions, which traps electrons produced later. The trapped electrons rapidly collisionally ionize the remaining cold Rydberg atoms to form a cold plasma.

摘要

我们已经观察到,尽管每个里德堡原子最初可能被高达100厘米-1的能量束缚,但一个密集的里德堡原子样本会自发演变成超冷等离子体。当原子最初被70厘米-1的能量束缚时,这种演变发生在大多数原子平动温度较低(<1 mK)时,但有一小部分(约1%)处于室温。热的和冷的里德堡原子之间的电离碰撞以及黑体光电离产生了一个基本静止的冷离子云,它捕获了后来产生的电子。被捕获的电子迅速通过碰撞使剩余的冷里德堡原子电离,从而形成冷等离子体。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验