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Tailored complex 3D vortex lattice structures by perturbed multiples of three-plane waves

机译:通过三平面波的扰动倍数定制复杂的3D涡旋晶格结构

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摘要

As three-plane waves are the minimum number required for the formation of vortex-embedded lattice structures by plane wave interference, we present our experimental investigation on the formation of complex 3D photonic vortex lattice structures by a designed superposition of multiples of phase-engineered three-plane waves. The unfolding of the generated complex photonic lattice structures with higher order helical phase is realized by perturbing the superposition of a relatively phase-encoded, axially equidistant multiple of three noncoplanar plane waves. Through a programmable spatial light modulator assisted single step fabrication approach, the unfolded 3D vortex lattice structures are experimentally realized, well matched to our computer simulations. The formation of higher order intertwined helices embedded in these 3D spiraling vortex lattice structures by the superposition of the multiples of phase-engineered three-plane waves interference is also studied.
机译:由于三平面波是通过平面波干涉形成涡流嵌入的晶格结构所需的最小数量,因此,我们通过设计相位工程三倍频的叠加来形成复杂的3D光子涡旋晶格结构的实验研究。平面波。通过扰动三个非共面平面波的相对相位编码的,轴向等距倍数的叠加,可以实现生成具有更高阶螺旋相位的复杂光子晶格结构的展开。通过可编程的空间光调制器辅助的单步制造方法,实验性地实现了展开的3D涡旋晶格结构,与我们的计算机模拟非常匹配。还研究了通过相位工程三平面波干涉的倍数的叠加形成嵌入这些3D螺旋旋涡晶格结构的高阶缠绕螺旋的方法。

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