论文标题
超越一轴扭曲:同时旋转摩托车挤压
Beyond one-axis twisting: Simultaneous spin-momentum squeezing
论文作者
论文摘要
量子纠缠的创建和操纵对于改善精度测量是至关重要的。生成用于原子干涉法的纠缠的主要方法是旋转挤压的过程,因此状态对$ su(2)$旋转变得更加敏感。产生这种纠缠的一种可能性是由一轴扭曲(燕麦)提供的,其中多个粒子纠缠的一种自由度是由非线性的哈密顿式化的。我们介绍了一种新颖的方法,该方法超越了燕麦,可以在两个不同的自由程度上产生挤压和纠缠。我们在由集体原子能水平和离散的集体动量状态组成的系统的特定物理环境中介绍我们的工作,同时也考虑了其他可能的实现。我们的系统使用非线性哈密顿量在$ su(4)$中产生动力学,从而为典型的$ su(2)$一轴扭曲创造了动态的机会。这导致三个轴由于两个自由度及其纠缠而遭受扭曲,从而产生了更丰富的量子纠缠背景。与标准旋转压缩制备的状态相比,该系统中制备的状态在多参数或辅助测量方案中可能使用。
The creation and manipulation of quantum entanglement is central to improving precision measurements. A principal method of generating entanglement for use in atom interferometry is the process of spin squeezing whereupon the states become more sensitive to $SU(2)$ rotations. One possibility to generate this entanglement is provided by one-axis twisting (OAT), where a many-particle entangled state of one degree of freedom is generated by a non-linear Hamiltonian. We introduce a novel method which goes beyond OAT to create squeezing and entanglement across two distinct degrees of freedom. We present our work in the specific physical context of a system consisting of collective atomic energy levels and discrete collective momentum states, but also consider other possible realizations. Our system uses a nonlinear Hamiltonian to generate dynamics in $SU(4)$, thereby creating the opportunity for dynamics not possible in typical $SU(2)$ one-axis twisting. This leads to three axes undergoing twisting due to the two degrees of freedom and their entanglement, with the resulting potential for a more rich context of quantum entanglement. The states prepared in this system are potentially more versatile for use in multi-parameter or auxiliary measurement schemes than those prepared by standard spin squeezing.