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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Coherent control of ultracold collisions with chirped light: Direction matters
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Coherent control of ultracold collisions with chirped light: Direction matters

机译:chi光与超冷碰撞的相干控制:方向很重要

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We demonstrate the ability to coherently control ultracold atomic Rb collisions using frequency-chirped light on the nanosecond time scale. For certain center frequencies of the chirp, the rate of inelastic trap-loss collisions induced by negatively chirped light is dramatically suppressed compared to the case of a positive chirp. We attribute this to a fundamental asymmetry in the system: an excited wave packet moves inward on the attractive molecular potential. For a positive chirp, the resonance condition moves outward in time, while for a negative chirp, it moves inward, in the same direction as the excited wave packet; this allows multiple interactions between the wave packet and the light, enabling the wave packet to be returned coherently to the ground state. Classical and quantum calculations support this interpretation.
机译:我们展示了使用纳秒级时标上的频率chi光连贯控制超冷原子Rb碰撞的能力。对于certain的某些中心频率,与正chi的情况相比,由负chi光引起的非弹性陷阱损失碰撞的速率被显着抑制。我们将其归因于系统中的一个基本不对称性:受激发的波包在有吸引力的分子势上向内移动。对于正chi,共振条件会及时向外移动;对于负chi,共振条件将向内移动,与受激波包的方向相同;这允许波包和光之间进行多次交互,从而使波包连贯地返回到基态。经典和量子计算支持这种解释。

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