Designing a Hexagonal Array of Gradient Pitch Helix Structure using Multiple Beam Interference for Broadband Light Trapping

Krishnendu Samanta, Shereena Joseph, S. Pandey, S. Sarkar, J. Joseph
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Abstract

We present a single-step fabrication approach of gradient pitch helix (GPH) structures arranged in a hexagonal array over a large area. In this simulation work, the structure has been generated by the mutual interference of seven beams where six beams are arranged symmetrically in a conical geometry. Another beam is along the central axis of the cone. This mechanism is a phase-controlled interference where each beam is assigned a distinct phase value. All the six beams have plane wavefronts, whereas the central beam is with a spherical wavefront. The numerical analysis theoretically demonstrates that the structure embedded in an active medium leads to light trapping and enhanced absorption for energy harvesting.
基于多光束干涉的六角形梯度螺距螺旋结构阵列宽带光捕获设计
提出了一种在大面积上以六边形排列的梯度螺距螺旋(GPH)结构的单步制备方法。在这个模拟工作中,结构是由七根梁的相互干涉产生的,其中六根梁对称地排列成锥形几何形状。另一束沿着圆锥体的中轴线。这种机制是一种相位控制的干涉,其中每个光束被赋予一个不同的相位值。六束光束均为平面波前,而中心光束为球面波前。数值分析从理论上证明了嵌入在活性介质中的结构会导致光捕获和增强吸收,从而实现能量收集。
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