16 research outputs found

    Voltage Controlled Intertwined Spiral Arrays for Reconfigurable Metasurfaces

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    Reconfigurable bistate metasurfaces composed of interwoven spiral arrays with embedded pin diodes are proposed for single and dual polarisation operation. The switching capability is enabled by pin diodes that change the array response between transmission and reflection modes at the specified frequencies. The spiral conductors forming the metasurface also supply the dc bias for controlling pin diodes, thus avoiding the need of additional bias circuitry that can cause parasitic interference and affect the metasurface response. The simulation results show that proposed active metasurfaces exhibit good isolation between transmission and reflection states, while retaining excellent angular and polarisation stability with the large fractional bandwidth (FBW) inherent to the original passive arrays

    Artificial surfaces of intertwined square spirals:A CPW model

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    Mechanisms and sources of passive intermodulation in printed circuits

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    Distributed passive intermodulation generation in coplanar waveguide transmission lines

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    Pulse mixing by Fibonacci and Thue-Morse ordered semiconductor layers

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    Nonlinear scattering by anisotropic dielectric periodic structures

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    The combinatorial frequency generation by the periodic stacks of binary layers of anisotropic nonlinear dielectrics is examined. The products of nonlinear scattering are characterised in terms of the three-wave mixing processes. It is shown that the intensity of the scattered waves of combinatorial frequencies is strongly influenced by the constitutive and geometrical parameters of the anisotropic layers, and the frequency ratio and angles of incidence of pump waves. The enhanced efficiency of the frequency conversion at Wolf-Bragg resonances has been demonstrated for the lossless and lossy-layered structures

    Gaussian pulse mixing and scattering by finite nonlinear layered structures

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