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强驱动二能级系统中的斯塔克效应和广义布洛赫-西格尔位移。

Stark effect and generalized Bloch-Siegert shift in a strongly driven two-level system.

机构信息

Department of Physics, University of Oulu, FI-90014, Finland.

出版信息

Phys Rev Lett. 2010 Dec 17;105(25):257003. doi: 10.1103/PhysRevLett.105.257003. Epub 2010 Dec 14.

Abstract

A superconducting qubit was driven in an ultrastrong fashion by an oscillatory microwave field, which was created by coupling via the nonlinear Josephson energy. The observed Stark shifts of the "atomic" levels are so pronounced that corrections even beyond the lowest-order Bloch-Siegert shift are needed to properly explain the measurements. The quasienergies of the dressed two-level system were probed by resonant absorption via a cavity, and the results are in agreement with a calculation based on the Floquet approach.

摘要

超导量子比特通过由非线性约瑟夫森能量耦合产生的振荡微波场以超强度方式驱动。观察到的“原子”能级的斯塔克位移非常明显,以至于甚至需要超出最低阶布洛赫-西格尔位移的修正才能正确解释测量结果。通过腔进行共振吸收探测了修饰后的两能级系统的准能,结果与基于弗洛凯方法的计算相符。

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