Efficient multiwave mixing in the ultraslow propagation regime and the role of multiphoton quantum destructive interference

We analyze a lifetime-broadened four-state four-wave-mixing (FWM) scheme in the ultraslow propagation regime and show that the generated FWM field can acquire the same group velocity and pulse shape as those of an ultraslow pump field. We show that a new type of induced transparency resulted from mu...

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Veröffentlicht in:Optics letters 2004-10, Vol.29 (19), p.2294-2296
Hauptverfasser: YING WU, PAYNE, M. G, HAGLEY, E. W, DENG, L
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container_title Optics letters
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creator YING WU
PAYNE, M. G
HAGLEY, E. W
DENG, L
description We analyze a lifetime-broadened four-state four-wave-mixing (FWM) scheme in the ultraslow propagation regime and show that the generated FWM field can acquire the same group velocity and pulse shape as those of an ultraslow pump field. We show that a new type of induced transparency resulted from multiphoton destructive interference that significantly reduced the pump field loss. Such induced transparency based on multphoton destructive interference may have important applications in other nonlinear optical processes.
doi_str_mv 10.1364/OL.29.002294
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source Optica Publishing Group Journals
subjects Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Nonlinear optics
Optics
Phase conjugation, optical mixing
photorefractive and kerr effects
Physics
Quantum optics
title Efficient multiwave mixing in the ultraslow propagation regime and the role of multiphoton quantum destructive interference
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