里德伯公式
齐纳二极管
里德堡原子
物理
哈密顿量(控制论)
电场
对称性破坏
量子
避免穿越
原子物理学
对称(几何)
凝聚态物理
量子力学
电压
离子
电离
激发态
几何学
数学优化
电阻器
数学
作者
S. S. Zhang,Wei Gao,Hong Cheng,Li You,Hongping Liu
标识
DOI:10.1103/physrevlett.120.063203
摘要
We report the observation of a controlled Landau-Zener transition (LZT) in Rydberg atoms by breaking the symmetry of the underlying Hamiltonian. For a nonhydrogenic Rydberg atom inside a changing electric (F) field, a LZT occurs between the avoided crossing energy levels of neighboring Rydberg states only for a sufficiently high changing rate. If a transverse magnetic (B) field is applied as we implement, the atomic level symmetry is broken, which causes the Stark manifolds denoted by a different |m| (m is the magnetic quantum number) to interact with each other. The mixed state levels end up pushing the adiabatically repelled target states closer and additionally they serve as stepping stones for the sequential LZTs between the neighboring sublevels. Such a feature significantly decreases the changing rate required for an efficient LZT inside a pure electric field. We report experimental observations that support the above scenario. It opens a versatile approach for engineering a controlled LZT in more general systems.
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