{"title":"具有轨道角动量生成、干扰和消除功能的 2 位 Patcharatnam-Berry 元曲面,用于降低宽带 RCS","authors":"A. Semenikhin, D. Semenikhina","doi":"10.30898/1684-1719.2024.5.10","DOIUrl":null,"url":null,"abstract":"The radar cross-section (RCS) reduction using non-absorbing digital Patcharatnam-Berry (PB) metasurfaces (MSs), consisting of 2-bit modules with generation, interference and cancellation of vortex electromagnetic waves with orbital angular momentum (OAM) is studied. Each module has a helical PB-phase profile and possesses vortex scattering. Module unit cells contain a shielded dielectric substrate and meta-particles in the form of triple-coupled split-ring resonators. The modules are distinguished by 2-bit coding of the initial tilt angle of the meta-particles 0º, 45º, 90º and 135º. The purpose of the work is to numerically analyze the generation of antiphase vortex beams (VBs) by OAM-modules and to assess the influence of interference and cancellation of antiphase vortices on the structure and order of OAM in the resulting field and the RCS reduction of three digital MSs in the form of 2´2 lattice of 2-bit OAM-modules of different sizes with different topological charges. The scattering characteristics are studied using HFSS for normally incident circularly polarized waves using of the finite element method. The simulation showed that the interference of phase vortices of four OAM-modules forms the main axial vortex and N additional interference side near and far vortices (N depends on the size of the MS). Interference vortex beams create phase singularities and zero the resulting far field in N side directions over the entire forward hemisphere. The intense OAM modes of the main vortex beams are of the fourth or eighth order. The OAM modes of adjacent interference VBs, as a rule, differ in sign. The proposed 2-bit MSs provide wider-angle phase cancellation of vortex fields (compared to 1-bit MSs) and, as a consequence, wider-angle diffuse scattering of the resulting field of the MS, which is important for RCS reduction.","PeriodicalId":391686,"journal":{"name":"Journal of Radio Electronics","volume":" 46","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-05-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"2-bit Patcharatnam-Berry metasurfaces with orbital angular momentum generation, interference and cancellation for broadband RCS reduction\",\"authors\":\"A. Semenikhin, D. 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The purpose of the work is to numerically analyze the generation of antiphase vortex beams (VBs) by OAM-modules and to assess the influence of interference and cancellation of antiphase vortices on the structure and order of OAM in the resulting field and the RCS reduction of three digital MSs in the form of 2´2 lattice of 2-bit OAM-modules of different sizes with different topological charges. The scattering characteristics are studied using HFSS for normally incident circularly polarized waves using of the finite element method. The simulation showed that the interference of phase vortices of four OAM-modules forms the main axial vortex and N additional interference side near and far vortices (N depends on the size of the MS). Interference vortex beams create phase singularities and zero the resulting far field in N side directions over the entire forward hemisphere. The intense OAM modes of the main vortex beams are of the fourth or eighth order. The OAM modes of adjacent interference VBs, as a rule, differ in sign. The proposed 2-bit MSs provide wider-angle phase cancellation of vortex fields (compared to 1-bit MSs) and, as a consequence, wider-angle diffuse scattering of the resulting field of the MS, which is important for RCS reduction.\",\"PeriodicalId\":391686,\"journal\":{\"name\":\"Journal of Radio Electronics\",\"volume\":\" 46\",\"pages\":\"\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2024-05-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Journal of Radio Electronics\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.30898/1684-1719.2024.5.10\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"\",\"JCRName\":\"\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Radio Electronics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.30898/1684-1719.2024.5.10","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
摘要
本文研究了使用非吸收数字帕恰纳姆-贝里(PB)元面(MS)减少雷达截面(RCS)的问题,该元面由具有轨道角动量(OAM)的涡旋电磁波生成、干扰和消除功能的 2 位模块组成。每个模块都具有螺旋 PB 相位轮廓和涡流散射。模块单元包含屏蔽介质基板和三耦合分环谐振器形式的元粒子。模块通过元粒子 0º、45º、90º 和 135º 初始倾斜角的 2 位编码进行区分。这项工作的目的是对 OAM 模块产生的反相涡束 (VB) 进行数值分析,并评估反相涡束的干扰和抵消对所产生场中 OAM 的结构和顺序的影响,以及以具有不同拓扑电荷的不同尺寸 2 位 OAM 模块的 2´2 网格为形式的三个数字 MS 的 RCS 降低情况。对于正常入射的圆极化波,使用有限元方法,利用 HFSS 对散射特性进行了研究。模拟结果表明,四个 OAM 模块的相位漩涡的干涉形成了主轴向漩涡和 N 个额外的干涉侧近漩涡和远漩涡(N 取决于 MS 的大小)。干涉涡束产生相位奇点,并使整个前半球 N 个侧方向上的远场为零。主涡束的强 OAM 模式为四阶或八阶。相邻干扰 VB 的 OAM 模式通常符号不同。与 1 位 MS 相比,拟议的 2 位 MS 可提供更宽角度的涡流场相位消除,因此 MS 产生的场可提供更宽角度的漫散射,这对降低 RCS 非常重要。
2-bit Patcharatnam-Berry metasurfaces with orbital angular momentum generation, interference and cancellation for broadband RCS reduction
The radar cross-section (RCS) reduction using non-absorbing digital Patcharatnam-Berry (PB) metasurfaces (MSs), consisting of 2-bit modules with generation, interference and cancellation of vortex electromagnetic waves with orbital angular momentum (OAM) is studied. Each module has a helical PB-phase profile and possesses vortex scattering. Module unit cells contain a shielded dielectric substrate and meta-particles in the form of triple-coupled split-ring resonators. The modules are distinguished by 2-bit coding of the initial tilt angle of the meta-particles 0º, 45º, 90º and 135º. The purpose of the work is to numerically analyze the generation of antiphase vortex beams (VBs) by OAM-modules and to assess the influence of interference and cancellation of antiphase vortices on the structure and order of OAM in the resulting field and the RCS reduction of three digital MSs in the form of 2´2 lattice of 2-bit OAM-modules of different sizes with different topological charges. The scattering characteristics are studied using HFSS for normally incident circularly polarized waves using of the finite element method. The simulation showed that the interference of phase vortices of four OAM-modules forms the main axial vortex and N additional interference side near and far vortices (N depends on the size of the MS). Interference vortex beams create phase singularities and zero the resulting far field in N side directions over the entire forward hemisphere. The intense OAM modes of the main vortex beams are of the fourth or eighth order. The OAM modes of adjacent interference VBs, as a rule, differ in sign. The proposed 2-bit MSs provide wider-angle phase cancellation of vortex fields (compared to 1-bit MSs) and, as a consequence, wider-angle diffuse scattering of the resulting field of the MS, which is important for RCS reduction.