Wallraff A, Schuster D I, Blais A, Gambetta J M, Schreier J, Frunzio L, Devoret M H, Girvin S M, Schoelkopf R J
Department of Applied Physics, Yale University, New Haven, Connecticut 06520, USA.
Phys Rev Lett. 2007 Aug 3;99(5):050501. doi: 10.1103/PhysRevLett.99.050501. Epub 2007 Jul 30.
Sideband transitions are spectroscopically probed in a system consisting of a Cooper pair box strongly but nonresonantly coupled to a superconducting transmission line resonator. When the Cooper pair box is operated at the optimal charge bias point, the symmetry of the Hamiltonian requires a two-photon process to access sidebands. The observed large dispersive ac-Stark shifts in the sideband transitions induced by the strong nonresonant drives agree well with our theoretical predictions. Sideband transitions are important in realizing qubit-photon and qubit-qubit entanglement in the circuit quantum electrodynamics architecture for quantum information processing.
在一个由与超导传输线谐振器强耦合但非共振耦合的库珀对盒组成的系统中,对边带跃迁进行了光谱探测。当库珀对盒在最佳电荷偏置点运行时,哈密顿量的对称性要求通过双光子过程来访问边带。由强非共振驱动引起的边带跃迁中观测到的大色散交流斯塔克位移与我们的理论预测非常吻合。边带跃迁对于在用于量子信息处理的电路量子电动力学架构中实现量子比特 - 光子和量子比特 - 量子比特纠缠非常重要。