Li Hai-Chao, Ge Guo-Qin, Zhang Hai-Yang
Opt Express. 2015 Apr 20;23(8):9844-51. doi: 10.1364/OE.23.009844.
We investigate electromagnetically induced transparency (EIT) and Autler-Townes splitting (ATS) in a driven three-level superconducting artificial system which is a dressed-state system resulting from the coupling of a superconducting charge qubit (an artificial atom) and a transmission line resonator. In the frame of the dressed-state approach and steady-state approximation, we study the linear absorption of the dressed artificial system to a weak probe signal in depth. In light of the spectrum-decomposition method and some other restrictions, we obtain the explicit conditions for the dressed-state realization of EIT and ATS and present a corresponding "phase diagram". In contrast to usual bare systems, these conditions given in the dressed system have an extra dependency on the qubit-resonator parameters. And by varying the qubit's Josephson coupling energy we demonstrate a transition from EIT to ATS.
我们研究了一个受驱动的三能级超导人工系统中的电磁诱导透明(EIT)和奥特勒-汤斯分裂(ATS),该系统是由一个超导电荷量子比特(一个人工原子)与一个传输线谐振器耦合形成的缀饰态系统。在缀饰态方法和稳态近似的框架下,我们深入研究了缀饰人工系统对弱探测信号的线性吸收。根据光谱分解方法和其他一些限制条件,我们得到了实现EIT和ATS缀饰态的明确条件,并给出了相应的“相图”。与通常的裸系统不同,缀饰系统中给出的这些条件对量子比特 - 谐振器参数有额外的依赖性。并且通过改变量子比特的约瑟夫森耦合能量,我们展示了从EIT到ATS的转变。