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Cross Kerr Effect Induced by Coupled Josephson Qubits in Circuit Quantum Electrodynamics

2010/12/24 by Yong Hu, Guo-Qin Ge, Shi Chen +2
Physics and Astronomy · #quant-ph

paper · pdf · doi:10.1103/physreva.84.012329

Submitted. Comments are welcome

arxiv created 2010/12/24 · arxiv updated 2015/05/20

Abstract

We propose a scheme for implementing cross Kerr nonlinearity between two superconducting transmission line resonators (TLR) via their interaction with a coupler which is constructed by two superconducting charge qubits connected to each other via a superconducting quantum interference device. When suitably driven, the coupler can induce very strong cross phase modulation (XPM) between the two TLRs due to its N-type level structure and the consequent electromagnetically induced transparency in its lowest states. The flexibility of our design can lead to various inter-TLR coupling configurations. The obtained cross Kerr coefficient is large enough to allow many important quantum operations in which only few photons are involved. We further show that this scheme is very robust against the fluctuations in solid state circuits. Our numerical calculations imply that the absorption and dispersion resulted from the decoherence of the coupler are very small compared with the strength of the proposed XPM.

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