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Article overview
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Realization of microwave amplification, attenuation, and frequency conversion using a single three-level superconducting quantum circuit | Yan-Jun Zhao
; Jiang-Hao Ding
; Z. H. Peng
; Yu-xi Liu
; | Date: |
20 Oct 2015 | Abstract: | Using different configurations of applied strong driving and weak probe
fields, we find that only a single three-level superconducting quantum circuit
(SQC) is enough to realize amplification, attenuation and frequency conversion
of microwave fields. Such a three-level SQC has to possess $Delta$-type cyclic
transitions. Different from the parametric amplification (attenuation) and
frequency conversion in nonlinear optical media, the real energy levels of the
three-level SQC are involved in the energy exchange when these processes are
completed. We mainly show the efficiencies of the amplification and the
frequency conversion for different types of driving fields. Our study provides
a new method to amplify (attenuate) microwave, realize frequency conversion,
and also lays a foundation for generating single or entangled microwave photon
states using a single three-level SQC. | Source: | arXiv, 1510.5737 | Services: | Forum | Review | PDF | Favorites |
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