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首页> 外文期刊>Science Advances >Ultra-compact broadband polarization diversity orbital angular momentum generator with 3.6 × 3.6 μm2 footprint
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Ultra-compact broadband polarization diversity orbital angular momentum generator with 3.6 × 3.6 μm2 footprint

机译:超紧凑型宽带极化分集轨道角动量发生器,占地面积仅为3.6×3.6μm2

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Orbital angular momentum (OAM), one fundamental property of light, has been of great interest over the past decades. An ideal OAM generator, fully compatible with existing physical dimensions (wavelength and polarization) of light, would offer the distinct features of broadband, polarization diversity, and ultra-compact footprint. Here, we propose, design, fabricate, and demonstrate an ultra-compact chip-scale broadband polarization diversity OAM generator on a silicon platform with a 3.6 × 3.6 μmsup2/sup footprint. The silicon OAM chip is formed by introducing a subwavelength surface structure (superposed holographic fork gratings) on top of a silicon waveguide, coupling the in-plane waveguide mode to the out-plane free-space OAM mode. We demonstrate in theory and experiment the broadband generation of polarization diversity OAM modes (x-/y-polarized OAMsub+1/sub/OAMsub?1/sub) from 1500 to 1630 nm with high purity and efficiency. The demonstrations of an ultra-compact broadband polarization diversity OAM generator may open up new perspectives for OAM-assisted N-dimensional optical multiplexing communications/interconnects and high-dimensional quantum communication systems.
机译:轨道角动量(OAM)是光的一种基本属性,在过去的几十年中一直引起人们极大的兴趣。理想的OAM发生器与光的现有物理尺寸(波长和偏振)完全兼容,将提供宽带,偏振分集和超紧凑型封装的独特功能。在这里,我们提出,设计,制造并演示了在硅平台上具有3.6×3.6μm 2 占位面积的超紧凑芯片级宽带极化分集OAM发生器。硅OAM芯片是通过在硅波导的顶部引入亚波长表面结构(全息叉状光栅),将面内波导模式耦合到面外自由空间OAM模式而形成的。我们在理论上和实验上证明了宽带分集OAM模式(x- / y极化OAM +1 / OAM ?1 )在1500至1630 nm范围内具有高纯度和效率。超紧凑型宽带偏振分集OAM发生器的演示可以为OAM辅助的N维光复用通信/互连和高维量子通信系统开辟新的前景。

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