论文标题

基于绝热定理的Bragg原子干涉法的分析理论

Analytic theory for Bragg atom interferometry based on the adiabatic theorem

论文作者

Siemß, Jan-Niclas, Fitzek, Florian, Abend, Sven, Rasel, Ernst M., Gaaloul, Naceur, Hammerer, Klemens

论文摘要

高保真bragg脉冲是最先进的原子干涉测量实验的必不可少的工具。在本文中,我们引入了此类脉冲的分析理论。我们的理论是基于关键见解,即绝热定理可以准确地描述Bragg脉冲的物理学。我们表明,具有任何光滑和绝热的脉冲形状,有效的布拉格衍射是可能的,而高保真的高斯脉冲仅是绝热的。我们的结果提供了有力的证据表明,根据绝热定理的绝热性是高性能Bragg脉冲的必要条件。我们的模型提供了对布拉格条件的直观理解,也称为“脉冲区域”的条件。它包括由于Landau-Zener过程以及有限原子速度分布的影响而校正绝热演化。我们通过将模型与Schrödinger方程的精确数值整合进行比较,以验证我们的模型,以衍射四个,六个,六个,八和十光子后坐力的高斯脉冲。我们的形式主义提供了一个分析框架来研究系统效应,以及限制了由于衍射过程而产生的Bragg光学元件的原子干涉仪的准确性。

High-fidelity Bragg pulses are an indispensable tool for state-of-the-art atom interferometry experiments. In this paper, we introduce an analytic theory for such pulses. Our theory is based on the pivotal insight that the physics of Bragg pulses can be accurately described by the adiabatic theorem. We show that efficient Bragg diffraction is possible with any smooth and adiabatic pulse shape and that high-fidelity Gaussian pulses are exclusively adiabatic. Our results give strong evidence that adiabaticity according to the adiabatic theorem is a necessary requirement for high-performance Bragg pulses. Our model provides an intuitive understanding of the Bragg condition, also referred to as the condition on the "pulse area". It includes corrections to the adiabatic evolution due to Landau-Zener processes as well as the effects of a finite atomic velocity distribution. We verify our model by comparing it to an exact numerical integration of the Schrödinger equation for Gaussian pulses diffracting four, six, eight and ten photon recoils. Our formalism provides an analytic framework to study systematic effects as well as limitations to the accuracy of atom interferometers employing Bragg optics that arise due to the diffraction process.

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