Scattering from a perfect electromagnetic conductor (PEMC) sphere using Gaussian vortex beam

IF 3.3 3区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Optical and Quantum Electronics Pub Date : 2024-09-05 DOI:10.1007/s11082-024-07379-3
M. Asif, M. Arfan, N. Khaleel, Saeed Althubiti, Ali Althobaiti
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Abstract

The scattering phenomena can be realized in a variety of everyday situations, including the rainbow pattern after a rainstorm, the dispersion of raindrops, information and communication (ICT) systems, radar cross section (RCS) measurement, and remote sensing. Inspired by the electromagnetic scattering features, this study explores the scattering characteristics of orbital angular momentum (OAM) carried by Gaussian vortex beam (GVB) for perfect electromagnetic conductor (PEMC) sphere by utilizing the generalized Lorenz–Mie theory (GLMT). Stemming from the integral localized approximation (ILA) method, the beam‐shape coefficients (BSCs) representing the incident GVB are obtained. Vortex beams carry distinct unique optical characteristics as compared to the other beam types as these possess OAM. Computations for the efficiencies (scattering and extinction) for a focused GVB are conducted and discussed to analyze the scattering phenomena of the electromagnetic fields outside the PEMC sphere. To ensure the accuracy of the results, scattering efficiency for Gaussian beam and plane wave is computed and compared using the GLMT for PEMC sphere. The OAM mode index, beam waist radius, and the scalar admittance of GVB are chosen as parameters to investigate their impact on the scattering dynamics (i.e., scattering and extinction efficiency). The numerical results show that OAM mode index, beam waist radius, and PEMC admittance have greater impact on optical efficiencies. Nonetheless, the trend of the scattering efficiency decreases irrespective of the extinction efficiency i.e., increases for OAM mode index.

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利用高斯涡流束从完美电磁导体(PEMC)球体进行散射
散射现象可在各种日常生活场景中实现,包括暴雨后的彩虹图案、雨滴的分散、信息和通信(ICT)系统、雷达截面(RCS)测量和遥感。受电磁散射特征的启发,本研究利用广义洛伦兹-米氏理论(GLMT)探讨了完美电磁导体(PEMC)球体的高斯涡束(GVB)携带的轨道角动量(OAM)的散射特征。根据积分局部近似(ILA)方法,得到了代表入射 GVB 的束形系数(BSC)。与其他光束类型相比,涡旋光束具有独特的光学特性,因为这些光束具有 OAM。对聚焦 GVB 的效率(散射和消光)进行了计算和讨论,以分析 PEMC 球外电磁场的散射现象。为确保结果的准确性,使用 PEMC 球体的 GLMT 计算并比较了高斯光束和平面波的散射效率。选择 OAM 模式指数、束腰半径和 GVB 的标量导纳作为参数,以研究它们对散射动力学(即散射和消光效率)的影响。数值结果表明,OAM 模式指数、束腰半径和 PEMC 导纳对光学效率的影响更大。然而,无论消光效率如何,散射效率都呈下降趋势,即 OAM 模式指数上升。
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来源期刊
Optical and Quantum Electronics
Optical and Quantum Electronics 工程技术-工程:电子与电气
CiteScore
4.60
自引率
20.00%
发文量
810
审稿时长
3.8 months
期刊介绍: Optical and Quantum Electronics provides an international forum for the publication of original research papers, tutorial reviews and letters in such fields as optical physics, optical engineering and optoelectronics. Special issues are published on topics of current interest. Optical and Quantum Electronics is published monthly. It is concerned with the technology and physics of optical systems, components and devices, i.e., with topics such as: optical fibres; semiconductor lasers and LEDs; light detection and imaging devices; nanophotonics; photonic integration and optoelectronic integrated circuits; silicon photonics; displays; optical communications from devices to systems; materials for photonics (e.g. semiconductors, glasses, graphene); the physics and simulation of optical devices and systems; nanotechnologies in photonics (including engineered nano-structures such as photonic crystals, sub-wavelength photonic structures, metamaterials, and plasmonics); advanced quantum and optoelectronic applications (e.g. quantum computing, memory and communications, quantum sensing and quantum dots); photonic sensors and bio-sensors; Terahertz phenomena; non-linear optics and ultrafast phenomena; green photonics.
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