page loader
Simple design of a wideband and wide-angle reflective linear polarization converter based on crescent-shaped metamaterial for Ku-band applications
Tác giả: Thi Quynh Hoa Nguyen, Thi Kim Thu Nguyen, Thi Quynh MaiNguyen, Thanh Nghia Cao, Huu Lam Phan, Ngoc Minh Luong, Dac Tuyen Le, Xuan Khuyen Bui, Chi LamTruong, Dinh LamVu
321    0
Optics Communications
Quyển: 486     Trang: 126773
Năm xuất bản: 5/2021
Tóm tắt
We report a wideband and wide-angle insensitive linear cross-polarization converter based on an anisotropic metamaterial. The converter structure consists of a periodic array of a top metallic crescent-shaped resonator and a bottom metallic ground plane separated by a dielectric layer of FR-4. Both simulation and experiment methods have performed to evaluate the proposed polarization converter performance. The results show a good agreement between the simulation and experimental results. The polarization converter efficiency above 90% is obtained for a wide bandwidth of 6 GHz covering the entire Ku-band (12–18 GHz) at normal incidence. Furthermore, the wideband polarization conversion properties are maintained with a large incident angle up to 45° for both transverse electric (TE) and transverse magnetic (TM) modes. Hence, the designed structure can be used for Ku-band applications.
Từ khóa
Metamaterials, Polarization Converter
Cùng tác giả
Xây dựng nội dung và tổ chức giảng dạy học phần Tín hiệu và hệ thốngBáo khoa họcTổng hợp và hoạt tính quang xúc tác của dây nano TiO2 pha tạp CoA MINIATURIZATION OF MICROSTRIP ANTENNA USING NEGATIVE PERMITIVITY METAMATERIAL BASED ON CSRR-LOADED GROUNDFOR WLAN APPLICATIONSStudy on negative permittivity metamaterial based on CSRR structure and its application in improving characteristics of microstrip antennaUltra-broadband, polarization insensitivity and wide-angle metamaterial absorber for visible spectrumNghiên cứu bộ hấp thụ sóng điện từ siêu vật liệu dải rộng và không phụ thuộc phân cựcNumerical Study of an Ultrabroadband, Wide-Angle, Polarization-Insensitivity Metamaterial Absorber in the Visible Region Magnetic, specific heat and electrical transport properties of oxygendeficient nanosized rutile TiO2−δMetamaterial based conical frustum array nanostructure for wide-angle and polarization-insensitive absorber in the visible regionStudy on negative permittivity metamaterial based on CSRR structure and its application in improving performances of MIMO antennaFacile design of ultrathin single layer broadband metamaterial absorber for C-band appicationsSolvothermal synthesis and photocatalytic activity of Ni-doped FeS2 nanoparticlesDefect induced co-polarization broadband metamaterial absorberSimple Design of Co-polarization broadband metamaterial absorber for C-band applicationsNumerical study of an efficient broadband metamaterial absorber in visible light regionFacile design of an ultra-thin broadband metamaterial absorber for C-band applicationsNumerical study of a broadband metamaterial absorber using a single split circle ring and lumped resistors for X-band applicationsA Comparasion of Photocatalytic Activity Between FeS2, Ni-Doped FeS2 Nanoparticles and Un-Doped FeS2/rGO CompositeA Comparasion of Photocatalytic Activity Between FeS2, Ni-Doped FeS2 Nanoparticles and Un-Doped FeS2/rGO CompositeSimple design of efficient broadband multifunctional polarization converter for X-band applicationsSimple Design of a Wideband and Wide-Angle Insensitive Metamaterial Absorber Using Lumped Resistors for X- and Ku-BandsNumerical Study of an Ultra-Broadband and Wide-Angle Insensitive Perfect Metamaterial Absorber in the UV–NIR RegionNumerical design of a high efficiency and ultra-broadband terahertz cross-polarization converterLightweight, Ultra‐wideband and Polarization Insensitive Metamaterial Absorber using Multilayer Dielectric Structure for C‐ and X‐band ApplicationsPolarization-insensitive dual-band terahertz metamaterial absorber based on asymmetric arrangement of two rectangular-shaped resonatorsReconfigurable broadband metasurfaces with nearly perfect absorption and high efficiency polarization conversion in THz rangeRelationship between morphological and physical properties in nanostructured CuMnO2Millimeter-wave broadband MIMO antenna using metasurfaces for 5G cellular networksImproved performance for antenna based on a combination of fractal geometry with CSRR