Today's antennas have to operate in multiple resonant frequencies to satisfy the need of recent advances in communication technologies.This paper presents split ring resonator based triangular multiband antenna wh...Today's antennas have to operate in multiple resonant frequencies to satisfy the need of recent advances in communication technologies.This paper presents split ring resonator based triangular multiband antenna whose antenna performance is enhanced with the help of frequency selective surfaces(FSSs).The antenna has multiple resonances at S,C,and X bands.An array of 4×3 crisscross-shaped unit cells are arranged to form the FSS layer.The antenna is fed with a microstrip line feeding technique.The proposed antenna operates at 3.5 GHz,4.1 GHz,5.5GHz,9.4GHz,and 9.8 GHz with a better return loss and gain.Simulated and measured results yield a good match.展开更多
We demonstrate micromachined reconfigurable metamaterials working at multiple frequencies simultaneously in the terahertz range.The proposed metamaterial structures can be structurally reconfigured by employing flexib...We demonstrate micromachined reconfigurable metamaterials working at multiple frequencies simultaneously in the terahertz range.The proposed metamaterial structures can be structurally reconfigured by employing flexible microelectromechanical system-based cantilevers in the resonators,which are designed to deform out of plane under an external stimulus.The proposed metamaterial structures provide not only multiband resonance frequency operation but also polarization-dependent tunability.Three kinds of metamaterials are investigated as electric split-ring resonator(eSRR)arrays with different positions of the split.By moving the position of the split away from the resonator’s center,the eSRR exhibits anisotropy,with the dipole resonance splitting into two resonances.The dipole–dipole coupling strength can be continuously adjusted,which enables the electromagnetic response to be tailored by adjusting the direct current(DC)voltage between the released cantilevers and the silicon substrate.The observed tunability of the eSRRs is found to be dependent on the polarization of the incident terahertz wave.This polarization-dependent tunability is demonstrated by both experimental measurements and electromagnetic simulations.展开更多
太赫兹调制器、滤波器、吸收器是太赫兹波应用领域的关键器件,而金属开口谐振环是这些器件的常用结构。通过仿真及实验的手段,系统地比较了不同亚波长金属开口谐振环结构的太赫兹波吸收特性。设计并制备两种不同形式的亚波长金属谐振环...太赫兹调制器、滤波器、吸收器是太赫兹波应用领域的关键器件,而金属开口谐振环是这些器件的常用结构。通过仿真及实验的手段,系统地比较了不同亚波长金属开口谐振环结构的太赫兹波吸收特性。设计并制备两种不同形式的亚波长金属谐振环,利用时域有限差分(FDTD)的模拟方法与光泵浦太赫兹探测(OPTP)的实验方法,分析了电磁波入射谐振环时,TM与TE模式下的太赫兹透射特性。发现在TM模式下,吸收峰峰值均反比于谐振环的等效电容值与等效电感值。而在TE模式下,由于偶极子振荡长度相同导致了两种谐振环吸收峰峰值相近。此外,改变外部光激励条件时实验结果表明TM模式下,单开口环比双开口环对光激励更敏感:泵浦光功率为5 m W相比无泵浦光时,单开口环透射率增加了80%,而双开口环透射率仅增加了43%。展开更多
A compact patch antenna is designed, which is with structures of cross-shape slot, Complementary Split Ring Resonator(CSRR), and loaded transmission line. To implement the compactness in size, these structures are etc...A compact patch antenna is designed, which is with structures of cross-shape slot, Complementary Split Ring Resonator(CSRR), and loaded transmission line. To implement the compactness in size, these structures are etched on the ground plane, then the input impedance has been improved. The CSRR is employed to improve impedance matching between the source and radiation patch, and the cross-shape slot on the radiation patch is utilized to increase the bandwidth. The design is validated by comparison of realistic field simulation with measurement results of an antenna prototype. The presented antenna is much smaller in size than conventional antennas with CSRR, showing good performances at the resonant frequency. The experimental results accord well with simulated results.展开更多
文摘Today's antennas have to operate in multiple resonant frequencies to satisfy the need of recent advances in communication technologies.This paper presents split ring resonator based triangular multiband antenna whose antenna performance is enhanced with the help of frequency selective surfaces(FSSs).The antenna has multiple resonances at S,C,and X bands.An array of 4×3 crisscross-shaped unit cells are arranged to form the FSS layer.The antenna is fed with a microstrip line feeding technique.The proposed antenna operates at 3.5 GHz,4.1 GHz,5.5GHz,9.4GHz,and 9.8 GHz with a better return loss and gain.Simulated and measured results yield a good match.
基金This work was supported by MOE2012-T2-2-154(Monolithic Integrated Si/AIN Nanophotonics Platform for Optical NEMS and OEICs)under WBS No.R-263-000-A59-112.
文摘We demonstrate micromachined reconfigurable metamaterials working at multiple frequencies simultaneously in the terahertz range.The proposed metamaterial structures can be structurally reconfigured by employing flexible microelectromechanical system-based cantilevers in the resonators,which are designed to deform out of plane under an external stimulus.The proposed metamaterial structures provide not only multiband resonance frequency operation but also polarization-dependent tunability.Three kinds of metamaterials are investigated as electric split-ring resonator(eSRR)arrays with different positions of the split.By moving the position of the split away from the resonator’s center,the eSRR exhibits anisotropy,with the dipole resonance splitting into two resonances.The dipole–dipole coupling strength can be continuously adjusted,which enables the electromagnetic response to be tailored by adjusting the direct current(DC)voltage between the released cantilevers and the silicon substrate.The observed tunability of the eSRRs is found to be dependent on the polarization of the incident terahertz wave.This polarization-dependent tunability is demonstrated by both experimental measurements and electromagnetic simulations.
文摘太赫兹调制器、滤波器、吸收器是太赫兹波应用领域的关键器件,而金属开口谐振环是这些器件的常用结构。通过仿真及实验的手段,系统地比较了不同亚波长金属开口谐振环结构的太赫兹波吸收特性。设计并制备两种不同形式的亚波长金属谐振环,利用时域有限差分(FDTD)的模拟方法与光泵浦太赫兹探测(OPTP)的实验方法,分析了电磁波入射谐振环时,TM与TE模式下的太赫兹透射特性。发现在TM模式下,吸收峰峰值均反比于谐振环的等效电容值与等效电感值。而在TE模式下,由于偶极子振荡长度相同导致了两种谐振环吸收峰峰值相近。此外,改变外部光激励条件时实验结果表明TM模式下,单开口环比双开口环对光激励更敏感:泵浦光功率为5 m W相比无泵浦光时,单开口环透射率增加了80%,而双开口环透射率仅增加了43%。
基金Hebei Provincial Education Department Youth Fund(QN2017114)。
文摘A compact patch antenna is designed, which is with structures of cross-shape slot, Complementary Split Ring Resonator(CSRR), and loaded transmission line. To implement the compactness in size, these structures are etched on the ground plane, then the input impedance has been improved. The CSRR is employed to improve impedance matching between the source and radiation patch, and the cross-shape slot on the radiation patch is utilized to increase the bandwidth. The design is validated by comparison of realistic field simulation with measurement results of an antenna prototype. The presented antenna is much smaller in size than conventional antennas with CSRR, showing good performances at the resonant frequency. The experimental results accord well with simulated results.