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Splitting of Atomic Beams by Light for Creation of High-Resolution Spatial Structures in Optical Nanolithography

机译:在光学纳米平版印刷术中通过光分裂原子束以创建高分辨率的空间结构

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摘要

Diffraction of atomic wave packets from a standing laser wave with a Gaussian profile is studied theoretically and numerically in pursuing the aim of creating high-resolution spatial structures in optical nanolithography. To this end, we propose to use nonadiabatic transitions between two optical potentials which take place when square of the value of detuning off the resonance is approximately equal to the Doppler shift. In this case, atomic wave packets experience splitting at nodes of the standing wave, which allows creating atomic structures on a substrate with a period substantially smaller than the standard nanofabrication limit equal to half the wavelength of light. We propose a scheme of the experiment for the observation of nonadiabatic transitions and splitting of the wave of matter caused by them. A number of computer simulations with parameters corresponding to real atoms have been performed, which exhibit this effect in both momentum and coordinate spaces.
机译:为了实现在光学纳米光刻中创建高分辨率空间结构的目标,从理论上和数值上研究了具有高斯轮廓的驻波激光对原子波包的衍射。为此,我们建议在两个光电势之间使用非绝热跃迁,当共振的失谐值的平方近似等于多普勒频移时发生。在这种情况下,原子波包在驻波的节点处经历分裂,这允许在基板上创建原子结构,该原子结构的周期大大小于等于光波长一半的标准纳米加工极限。我们提出了一个实验方案,用于观察非绝热转变和由它们引起的物质波的分裂。已经进行了许多具有与真实原子相对应的参数的计算机仿真,这些仿真在动量和坐标空间中都表现出这种效果。

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