Nonlinear dynamics of an optomechanical system with a coherent mechanical pump: second-order sideband generation

Suzuki, Hiroyuki, Brown, Eric and Sterling, Ray (2015) Nonlinear dynamics of an optomechanical system with a coherent mechanical pump: second-order sideband generation. Physical Review A (Atomic, Molecular and Optical Physics), 92 3: 033823.1-033823.5. doi:10.1103/PhysRevA.92.033823

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Author Suzuki, Hiroyuki
Brown, Eric
Sterling, Ray
Title Nonlinear dynamics of an optomechanical system with a coherent mechanical pump: second-order sideband generation
Journal name Physical Review A (Atomic, Molecular and Optical Physics)   Check publisher's open access policy
ISSN 1094-1622
1050-2947
Publication date 2015-09-14
Sub-type Article (original research)
DOI 10.1103/PhysRevA.92.033823
Open Access Status File (Publisher version)
Volume 92
Issue 3
Start page 033823.1
End page 033823.5
Total pages 5
Place of publication College Park, MD, United States
Publisher American Physical Society
Collection year 2016
Language eng
Abstract Second-order sideband generation in a coherent-mechanical pumped optomechanical system is discussed, and the features of the coherent mechanical pump induced enhancement of second-order sideband generation are identified. We show that the coherent mechanical pump induced enhancement of second-order sideband generation exhibits an essential difference between the case of a weak control field and a strong control field. In the weak control field case, the efficiency of second-order sideband generation increases as the amplitude of the mechanical pump increases. In the strong control field case, the effect of optomechanically induced transparency occurs and increasing the amplitude of the mechanical pump does not always bring an enhancement of second-order sideband generation. The phase-dependent effect of the second-order sideband generation with a coherent mechanical pump is also discussed, and it is shown that the phase difference ϕ plays an important role in the process of second-order sideband generation.
Q-Index Code C1
Q-Index Status Provisional Code
Institutional Status UQ

Document type: Journal Article
Sub-type: Article (original research)
Collections: School of Mathematics and Physics
Official 2016 Collection
 
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