Squeezing Enhancement by Damping in a Driven Atom-Cavity System
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概要
- 論文の詳細を見る
We investigate a coupled atom-cavity system in which a two-level atom is driven by a classical field. It is shown that the cavity mode, which is in a coherent state in the absence of its reservoir, can be squeezed via coupling to the reservoir. The squeezing effect is enhanced to some extent as the cavity damping rate is increased. In particular, we obtain an unusual optimal condition for the squeezing in which the pumping field is inversely proportional to the damping rate.
- 社団法人日本物理学会の論文
- 2002-07-15
著者
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LEE Jai-Hyung
School of Physics, Seoul National University
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AN Kyungwon
School of Physics, Seoul National University
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Lee J‐h
Seoul National Univ. Seoul Kor
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Lee Jai-hyung
School Of Physics Seoul National University
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KIM Sang-wook
Department of Chemical Engineering, The University of Seoul
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Kim Sang-wook
Department Of Physics Kaist
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NHA Hyunchul
School of Physics, Seoul National University
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CHOUGH Young-Tak
Department of Physics, KAIST
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Kim Sang-wook
Department Of Chemical Engineering The University Of Seoul
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An Kyungwon
School Of Physics Seoul National University
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Nha Hyunchul
School Of Physics Seoul National University:department Of Physics Kaist
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Chough Y‐t
Department Of Physics Kaist
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AN Kyungwon
School of Physics and Astronomy, Seoul National University
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LEE Jai-Hyung
School of Physics and Astronomy, Seoul National University
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