Resonant frequencies of a combination of split rings: Experimental, analytical and numerical study
β Scribed by A. Radkovskaya; M. Shamonin; C. J. Stevens; G. Faulkner; D. J. Edwards; E. Shamonina; L. Solymar
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 87 KB
- Volume
- 46
- Category
- Article
- ISSN
- 0895-2477
No coin nor oath required. For personal study only.
β¦ Synopsis
In this paper, a reduced-size novel periodic-waveguide resonant structure has been presented. It consists of a dielectric block that is transversely placed inside a rectangular waveguide formed in an MMIC substrate. The dielectric block supports periodic metallization patches. A bandpass filter at 74 GHz was designed and simulated and the simulated results were presented in order to verify the performance of the novel structure. This proposed configuration, results in the development of high-Q components, which are of great importance in filter applications at mm-wave frequencies.
π SIMILAR VOLUMES
In this article, we propose a theoretical formulation to estimate the resonant frequency and magnetic polarizability of a circular split ring resonator (SRR). The computed results are compared with experimental and simulation results revealing excellent agreement for a wide range of frequencies. The
## Abstract A suspension of nonβneutrally buoyant, large, nearly monodisperse spheres is studied both in batch sedimentation and in shear between concentric rotating cylinders. We apply a continuum constitutive equation based on the diffusive flux model augmented with buoyancy terms derived by Acri