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Observation of bound state self-interaction in a nano-eV atom collider

机译:纳米eV原子碰撞器中束缚态自相互作用的观察

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摘要

Quantum mechanical scattering resonances for colliding particles occur when a continuum scattering state couples to a discrete bound state between them. The coupling also causes the bound state to interact with itself via the continuum and leads to a shift in the bound state energy, but, lacking knowledge of the bare bound state energy, measuring this self-energy via the resonance position has remained elusive. Here, we report on the direct observation of self-interaction by using a nano-eV atom collider to track the position of a magnetically-tunable Feshbach resonance through a parameter space spanned by energy and magnetic field. Our system of potassium and rubidium atoms displays a strongly non-monotonic resonance trajectory with an exceptionally large self-interaction energy arising from an interplay between the Feshbach bound state and a different, virtual bound state at a fixed energy near threshold.
机译:当连续散射状态耦合到它们之间的离散束缚状态时,会发生碰撞粒子的量子机械散射共振。耦合还会使束缚态通过连续体与其自身相互作用,并导致束缚态能量发生移动,但是,由于缺乏对裸束缚态能量的了解,通过共振位置测量该自能仍然难以捉摸。在这里,我们报告通过使用纳米eV原子对撞机通过能量和磁场所跨越的参数空间来跟踪可磁调谐的Feshbach共振的位置,从而直接观察到自我相互作用。我们的钾和rub原子系统显示出强烈的非单调共振轨迹,并具有非常大的自相互作用能,这是由于Feshbach束缚态与处于阈值附近的固定能量的不同虚拟束缚态之间的相互作用而产生的。

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