论文标题
超冷偶极分子中自旋挤压的动力产生
Dynamical generation of spin squeezing in ultra-cold dipolar molecules
论文作者
论文摘要
我们研究了限制在二维几何形状中的量子退化状态下的散装费米子偶极分子气体。我们考虑两个编码自旋1/2自由度的旋转状态。我们得出了一个远程相互作用的XXZ模型,该模型描述了在自由度被冷冻的机制中有效的分子的多体旋转动力学。由于谐波振荡器模式的空间扩展性质,旋转模型中的相互作用非常长,并且系统的行为接近集体极限,从而导致稳健的动力学和在有限温度下以及在散发和化学反应的情况下以自旋挤压的形式产生旋转的形式。我们证明了如何利用内部状态结构来实现时间逆转和增强的计量传感协议。
We study a bulk fermionic dipolar molecular gas in the quantum degenerate regime confined in a two-dimensional geometry. We consider two rotational states that encode a spin 1/2 degree of freedom. We derive a long-range interacting XXZ model describing the many-body spin dynamics of the molecules valid in the regime where motional degrees of freedom are frozen. Due to the spatially extended nature of the harmonic oscillator modes, the interactions in the spin model are very long-ranged and the system behaves close to the collective limit, resulting in robust dynamics and generation of entanglement in the form of spin squeezing even at finite temperature and in presence of dephasing and chemical reactions. We demonstrate how the internal state structure can be exploited to realise time-reversal and enhanced metrological sensing protocols.