Atom-laser coherence via multiloop feedback control
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Yanagisawa, Masahiro
James, Matthew
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American Physical Society
Abstract
Coherence control is the key to success in the applications of atom-laser beams. A multiloop measurement feedback control scheme is proposed to improve atom-laser coherence. The first loop aims to cancel the decohering effects of the nonlinear atom-atom interactions via direct measurement feedback. However, there are nonlinear interactions with the optical probe field used in the measurement scheme which may also contribute to a degradation in atom-laser performance. Accordingly, a second feedback loop is used to reduce these effects based on linear quadratic Gaussian control. The multiloop design achieves improved atom-laser coherence.
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Physical Review A: Atomic, Molecular and Optical Physics
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2037-12-31
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