Controlling Decoherence in Bose-Einstein Condensation by Light Scattering far off Resonance

Physics – Quantum Physics

Scientific paper

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4 pages,3 figures,Revtex,Inst.Theor.Phys,CAS,China, suncp@itp.ac.cn;http://www.itp.ac.cn/~suncp

Scientific paper

It is shown that, through a super-radiant Rayleigh scattering, a strong far off-resonant pump laser applied to a Bose-Einstein condensates(BEC) can induce a non-demolition coupling of the many-mode quantized vacuum field to the BEC. This effective interaction will force the total system of the BEC plus the light field to evolve from a factorized initial state to an ideal entangled state and thus result in the quantum decoherence in the BEC. Since the effective coupling coefficients are mainly determined by the Rabi frequency of the pump laser, the quantum decoherence process can be controlled by adjusting the intensity of the pump laser. To study the physical influence of decoherence on the BEC, we investigate how the coherent tunneling of BEC in a well-separated tight double wall is suppressed by the effectively-entangled vacuum modes.

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