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Atomic beam focusing by a near-field atomic microlens

机译:近场原子微透镜对原子束的聚焦

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Atomic beam focusing by an atomic microlens formed by the optical field diffracted from a circular aperture in a metallic screen is considered for an aperture diameter smaller than the wavelength of the field. Analytic expressions are derived for the dipole gradient force acting on an atom in the field of diffracted radiation. It is shown that the action of the gradient force makes it possible to focus the atomic beam into a spot with a diameter on the order of a few nanometers. Numerical estimates are obtained for the focusing properties of the atomic microlens in the model describing the dipole interaction of Rb atoms with laser radiation in the vicinity of the D line.
机译:对于由小于金属场中的圆形孔的衍射光所形成的原子微透镜聚焦的原子束,认为其孔径小于该场的波长。推导了衍射辐射场中作用在原子上的偶极梯度力的解析表达式。结果表明,梯度力的作用使得可以将原子束聚焦到直径约为几纳米的光斑中。在描述Rb原子与D线附近的激光辐射的偶极相互作用的模型中,获得了原子微透镜聚焦特性的数值估计。

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