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Raman coherence in a circuit quantum electrodynamics lambda system

delete2015-11-09
delete57
PRE
AI
S
S P Novikov *
T
Timothy M. Sweeney
J
J. E. Robinson
S
Shavindra Premaratne
B
Baladitya Suri
F
F. C. Wellstood
B
B. S. Palmer
DOI:10.1038/NPHYS3537delete
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Abstract

Abstract

En 中文
Atomic three-level A systems dressed by two coherent electromagnetic fields can exhibit coherent population trapping and electromagnetically induced transparency (EIT) due to quantum interference. By addressing the combined qubit-cavity states of a superconducting transmon qubit in a three-dimensional copper cavity with two microwave drives we establish an effective A system, two legs of which are defined by a dipole transition and a two-photon transition. This circuit-based system allows the observation of three-microwave-photon Raman coherence effects, including coherent population trapping and EIT, which are demonstrated here with both steady-state spectroscopic techniques and time-domain measurements. By sending Gaussian microwave pulses through the cavity in the EIT regime, a negative group velocity of the pulse is observed with the peak of the pulse exiting the cavity 9.4 mu s before entering.
Keywords:
LIGHT
PROPAGATION
INFORMATION
STORAGE
PHOTON
PULSE
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Journal

Nature Physics cover
Nature Physics
IF:
18.4
Papers:
6.7K
Citations:
5.7W

Organization

University System of Maryland cover
University System of Maryland
Scholars:
6.4W
Papers: 5.6W
Citations: 113