论文标题

通用原子干涉仪模拟器 - 弹性散射过程

Universal Atom Interferometer Simulator -- Elastic Scattering Processes

论文作者

Fitzek, Florian, Siemß, Jan-Niclas, Seckmeyer, Stefan, Ahlers, Holger, Rasel, Ernst M., Hammerer, Klemens, Gaaloul, Naceur

论文摘要

在本文中,我们介绍了一个通用模拟器,涵盖了物质波灯脉冲弹性散射的所有机制。该模拟器应用于原子干涉法作为研究案例,在弹性情况下,即原子的内部状态保持不变。从这个角度来看,轻脉冲梁的分裂被解释为空间和时间依赖的外部电位。在基于动量空间的普通微分方程系统的通常方法的转变中,我们的位置空间处理是灵活的,并且对光场具有任意复杂的空间行为而不是仅仅是平面波的现实情况。此外,我们开发的数值软件包毫不费力地扩展到了被困和相互作用的几何形状的问题类别,这些几何形状在动量空间的普通微分方程的通常框架中没有简单的公式。我们通过重新审查与精度原子干涉率社区相关的几个案例研究来检查模型的有效性。当它们存在时,我们检索它们的分析解决方案,并以跨度方式将分析扩展到更复杂的参数范围。该方法的灵活性,它给出的洞察力,其数值可伸缩性和准确性使其成为设计,理解和定量分析面向计量的物质波干涉测量学实验的精致工具。

In this article, we introduce a universal simulator covering all regimes of matter wave light-pulse elastic scattering. Applied to atom interferometry as a study case, this simulator solves the atom-light diffraction problem in the elastic case i.e. when the internal state of the atoms remains unchanged. Taking this perspective, the light-pulse beam splitting is interpreted as a space- and time-dependent external potential. In a shift from the usual approach based on a system of momentum-space ordinary differential equations, our position-space treatment is flexible and scales favourably for realistic cases where the light fields have an arbitrary complex spatial behaviour rather than being mere plane waves. Moreover, the numerical package we developed is effortlessly extended to the problem class of trapped and interacting geometries, which have no simple formulation in the usual framework of momentum-space ordinary differential equations. We check the validity of our model by revisiting several case studies relevant to the precision atom interferometry community. We retrieve analytical solutions when they exist and extend the analysis to more complex parameter ranges in a cross-regime fashion. The flexibility of the approach, the insight it gives, its numerical scalability and accuracy make it an exquisite tool to design, understand and quantitatively analyse metrology-oriented matter-wave interferometry experiments.

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