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Near-field imaging with two transmission gratings for submicrometer localization of atoms

机译:具有两个透射光栅的近场成像,用于原子的亚微米级定位

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摘要

We show theoretically that an atomic pattern with period d can be obtained with 100% visibility even for an infinitely extended source by sending atoms through two transmission gratings with periods d and d/2, respectively, and separated by half the Talbot length LT/2=d^2/2λdB, where λdB is the atomic wavelength and the source is infinitely far away. For a finite source distance, as would be attainable in any real experiment, a small correction to the grating periods and separations restores the period-d pattern. This effect is closely related to the Talbot and Lau effects in classical optics and can be used to localize atoms to a submicrometer scale without a compromise in atomic flux. We first derive compact analytical formulas for the idealized case of a monochromatic source and large gratings and then verify numerically that a finite grating size and velocity dispersion in the beam do not decrease the fringe visibility considerably. Finally, we briefly present an experiment in preparation to exhibit this localization.
机译:我们从理论上证明,即使对于无限扩展的源,也可以通过分别通过两个具有周期d和d / 2的透射光栅将原子发送并隔开一半Talbot长度LT / 2来获得具有d周期的原子图案,即使对于无限扩展的源也是如此。 = d ^ 2 /2λdB,其中λdB是原子波长,并且光源无限远。对于有限的光源距离,如在任何实际实验中都可以达到的那样,对光栅周期和间隔进行较小的校正就可以恢复到周期d的图形。该效应与经典光学中的Talbot和Lau效应密切相关,可用于在不影响原子通量的情况下将原子定位到亚微米级。我们首先针对单色光源和大型光栅的理想情况导出紧凑的分析公式,然后通过数值验证,有限的光栅尺寸和光束中的速度色散不会显着降低条纹的可见性。最后,我们简要介绍了一个准备展示这种本地化的实验。

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