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首页> 外文期刊>Scientific reports. >Inverted Gabor holography principle for tailoring arbitrary shaped three-dimensional beams
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Inverted Gabor holography principle for tailoring arbitrary shaped three-dimensional beams

机译:倒置的Gabor全息原理剪裁任意形状的三维光束

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摘要

It is well known that by modifying the wavefront in a certain manner, the light intensity can be turned into a certain shape. However, all known light modulation techniques allow for limited light modifications only: focusing within a restricted region in space, shaping into a certain class of parametric curves along the optical axis or bending described by a quadratic-dependent deflection as in the case of Airy beams. We show a general case of classical light wavefront shaping that allows for intensity and phase redistribution into an arbitrary profile including pre-determined switching-off of the intensity. To create an arbitrary three-dimensional path of intensity, we represent the path as a sequence of closely packed individual point-like absorbers and simulate the in-line hologram of the created object set; when such a hologram is contrast inverted, thus giving rise to a diffractor, it creates the pre-determined three-dimensional path of intensity behind the diffractor under illumination. The crucial parameter for a smooth optical path is the sampling of the predetermined curves, which is given by the lateral and axial resolution of the optical system. We provide both, simulated and experimental results to demonstrate the power of this novel method.
机译:众所周知,通过以某种方式修改波前,光强度可以变成一定的形状。然而,所有已知的光调制技术都允许仅用于有限的光修改:聚焦在空间中的限制区域内,沿着光轴或通过二次依赖性偏转描述的弯曲成的一类参数曲线,如通风梁的情况下。我们示出了古典光波前塑造的一般情况,其允许强度和相位重新分配到任意轮廓中,包括预先确定的强度的断开。要创建任意三维的强度路径,我们将路径表示为一系列紧密包装的单点吸收器,并模拟所创建的对象集的线上全息图;当这样的全息图反转时,从而产生衍射器,它在照明下产生衍射器后面的预定三维的强度路径。平滑光路的关键参数是预定曲线的采样,其由光学系统的横向和轴向分辨率给出。我们提供模拟和实验结果,以证明这种新方法的力量。

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