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On-chip phase-shifted Bragg gratings and their application for spatiotemporal transformation of Bloch surface waves

机译:片上相移布拉格光栅及其对白光表面波的时空变换的应用

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In this work, we study numerically and theoretically phase-shifted Bragg gratings (PSBG) for Bloch surface waves (BSW) propagating along the interfaces between a ID photonic crystal and a homogeneous medium. The studied on-chip structure consists of a set of dielectric ridges located on the photonic crystal surface constituting two symmetrical on-chip Bragg gratings separated by a defect layer. Rigorous simulation results demonstrate that the surface wave diffraction on the proposed on-chip PSBG is close to the diffraction of plane electromagnetic waves on conventional PSBG. For the considered examples, the correlation coefficient between the spectra of conventional PSBG and on-chip PSBG exceeds 0.99 near the resonance corresponding to the excitation of the eigenmodes localized in the defect layer. Conventional PSBG are widely used for spectral filtering as well as for temporal and spatial transformations of optical pulses and beams including differentiation and integration of pulse envelope or beam profile. In the present work, we discuss the capability of on-chip PSBG to implement the operations of temporal and spatial differentiation of BSW pulses and beams. The presented examples demonstrate the possibility of using the proposed structure for high-quality differentiation. The obtained results can be applied for the design of the prospective integrated systems for on-chip all-optical analog computing.
机译:在这项工作中,我们在沿着ID光子晶体和均匀介质之间的界面传播的光滑表面波(BSW)进行数字和理论相移布拉格光栅(PSBG)。所研究的片上结构包括位于光子晶体表面上的一组介电脊,构成由缺陷层分开的两个对称的片上布拉格光栅。严格的模拟结果表明,所提出的片上PSBG上的表面波衍射接近传统PSBG上的平面电磁波的衍射。对于所考虑的示例,传统PSBG和片上PSBG的光谱之间的相关系数超过与缺陷层中局叶的激发相对应的谐振附近的0.99。传统的PSBG广泛用于光谱滤波以及光学脉冲和光束的时间和空间变换,包括脉冲包络或梁轮廓的分化和集成。在目前的工作中,我们讨论片上PSBG的能力,以实现BSW脉冲和光束的时间和空间分化的操作。本实施例证明了使用所提出的结构进行高质量分化的可能性。可以应用所获得的结果,用于设计用于片上全光学模拟计算的预期集成系统。

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