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Photonic band gaps in one-dimensional magnetized plasma photonic crystals with arbitrary magnetic declination

机译:具有任意磁偏角的一维磁化等离子体光子晶体中的光子带隙

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In this paper, the properties of photonic band gaps and dispersion relations of one-dimensional magnetized plasma photonic crystals composed of dielectric and magnetized plasma layers with arbitrary magnetic declination are theoretically investigated for TM polarized wave based on transfer matrix method. As TM wave propagates in one-dimensional magnetized plasma photonic crystals, the electromagnetic wave can be divided into two modes due to the influence of Lorentz force. The equations for effective dielectric functions of such two modes are theoretically deduced, and the transfer matrix equation and dispersion relations for TM wave are calculated. The influences of relative dielectric constant, plasma collision frequency, incidence angle, plasma filling factor, the angle between external magnetic field and tz axis, external magnetic field and plasma frequency on transmission, and dispersion relation are investigated, respectively, and some corresponding physical explanations are also given. From the numerical results, it has been shown that plasma collision frequency cannot change the locations of photonic band gaps for both modes, and also does not affect the reflection and transmission magnitudes. The characteristics of photonic band gaps for both modes can be obviously tuned by relative dielectric constant, incidence angle, plasma filling factor, the angle between external magnetic field and tz axis, external magnetic field and plasma frequency, respectively. These results would provide theoretical instructions for designing filters, microcavities, and fibers, etc
机译:本文基于传递矩阵法,对TM极化波进行了理论研究,研究了由任意磁偏角的电介质和磁化等离子体层构成的一维磁化等离子体光子晶体的光子带隙性质和色散关系。当TM波在一维磁化等离子体光子晶体中传播时,由于洛伦兹力的影响,电磁波可以分为两种模式。从理论上推导了这两种模态的有效介电函数方程,并计算了TM波的传递矩阵方程和色散关系。分别研究了相对介电常数,等离子体碰撞频率,入射角,等离子体填充因子,外部磁场与tz轴之间的夹角,外部磁场与等离子体频率对透射率和色散关系的影响,并给出了相应的物理解释。还给出。从数值结果表明,等离子体碰撞频率不能改变两种模式的光子带隙的位置,也不会影响反射和透射的幅度。可以分别通过相对介电常数,入射角,等离子体填充因子,外部磁场与tz轴之间的角度,外部磁场与等离子体频率分别对两种模式的光子带隙特性进行调整。这些结果将为设计过滤器,微腔和纤维等提供理论指导。

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