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Design of a Metamaterial Cavity for Harmonic Terahertz Gyrotrons

机译:谐波太赫兹回旋管超材料腔的设计

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A resonant cavity is developed with a metallic photonic crystal (MPC) to reduce the magnetic field strength and suppress mode competition for a terahertz fourth-harmonic gyrotron. Due to the photonic band gap, electromagnetic waves radiated in certain directions at specified frequencies cannot propagate in the photonic crystal. The dispersion relations of MPC were numerically calculated using a finite-difference frequency-domain method. The gap map for a square lattice of metallic rods was derived from the dispersion relations as the radius of the rods varies. The map of the localized modes in the defects was plotted to illustrate the connection between the band structure and the TE modes. The MPC cavity was simulated and better performance was demonstrated in terms of mode competition compared with a circular waveguide cavity of equivalent cut-off radius at 1-THz.
机译:用金属光子晶体(MPC)形成谐振腔,以降低磁场强度并抑制太赫兹四谐波回旋管的模式竞争。由于光子带隙,在特定方向上以特定频率辐射的电磁波无法在光子晶体中传播。 MPC的色散关系是使用有限差分频域方法进行数值计算的。金属棒的方格的间隙图是根据金属棒半径变化时的色散关系得出的。绘制缺陷中的局部模式的图以说明能带结构与TE模式之间的关系。与在1-THz处等效截止半径的圆形波导腔相比,对MPC腔进行了仿真,并在模式竞争方面表现出更好的性能。

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