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Transient atom optics: reflection and transmission of atoms by a time-dependent laser field

机译:瞬态原子光学:随时间变化的激光场对原子的反射和透射

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Abstract: Although there are many kinds of different techniques developed to manipulate atomic matter waves, a laser beam is still considered as the most effective `optical element' to manipulate atomic waves in atom optics. In the laser-based atom optic devices, the spatial profiles of a laser beam play a central role in controlling the motion of atoms. By choosing different spatial profiles of laser beams, one can construct atom optic devices for different purposes. Recently experimental demonstrations of manipulation of center of mass motion of atoms by time-dependent light field were reported. In this paper we theoretically study the transient effects in atom optics by using a laser pulse train. The reflection and transmission of atoms through the laser pulse train are studied in detail. We find that the laser pulse train acts as both a spatial beam splitter and a `temporal grating' which can both reflect or transmit atoms in spatial domain and `diffract' atoms in the time domain.!22
机译:摘要:尽管开发了许多种操纵原子波的技术,但是激光束仍然被认为是操纵原子光学中最有效的“光学元件”。在基于激光的原子光学设备中,激光束的空间轮廓在控制原子的运动中起着核心作用。通过选择不同的激光束空间分布,可以构建用于不同目的的原子光学设备。最近报道了通过时变光场操纵原子质心运动的实验证明。在本文中,我们从理论上通过使用激光脉冲序列研究原子光学中的瞬态效应。详细研究了原子通过激光脉冲序列的反射和透射。我们发现,激光脉冲串既可以充当空间分束器,又可以充当“时间光栅”,既可以反射或透射空间域中的原子,又可以反射时域中的“衍射”原子。22

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