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首页> 外文期刊>The European Physical Journal D >Localization of electromagnetic waves in one-dimensional disordered media composed of magnetized plasma: dependence on the external magnetic field, incident angle and plasma density
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Localization of electromagnetic waves in one-dimensional disordered media composed of magnetized plasma: dependence on the external magnetic field, incident angle and plasma density

机译:电磁波在由磁化等离子体组成的一维无序介质中的局域性:取决于外部磁场,入射角和等离子体密度

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摘要

In this paper, we propose a one-dimensional disordered system composed of magnetized plasma and dielectric layers. To introduce the disorder through the system, the width of the magnetized plasma layers is selected to be a uniformly distributed random number. Propagation of an obliquely incident electromagnetic wave in the disordered medium is studied. The transfer matrix method is used to calculate the transmittance and localization length of the incident wave. In the presence of disorder, both localized and extended states are present and the number of localized states increases with increasing the disorder level. For a high disorder level, there is a dip in the curve of localization length versus frequency which is attributed to the resonance of real part of the effective dielectric constant of the magnetized plasma. The transmission properties in terms of an external magnetic field and incident angle are investigated. We demonstrate that the localization length of the wave at each frequency can be effectively tuned by changing the external magnetic field as well as the incident angle. The localization length dip is shifted toward larger frequency with increasing the external magnetic field. The effects of plasma density on localization length are considered here. The localization length decreases with increasing plasma density. For larger plasma densities, the effects of the external magnetic field on localization behaviors become larger. We also study the dependence of localization features on the external magnetic field for a disordered structure at which the widths of the plasma layers have exponential distribution.
机译:在本文中,我们提出了由磁化等离子体和介电层组成的一维无序系统。为了通过系统引入无序,将磁化等离子体层的宽度选择为均匀分布的随机数。研究了倾斜入射电磁波在无序介质中的传播。传递矩阵法用于计算入射波的透射率和定位长度。在存在障碍的情况下,局部状态和扩展状态都同时存在,并且局部状态的数量随着障碍水平的提高而增加。对于高无序水平,定位长度与频率的关系曲线上存在一个下降,这归因于磁化等离子体有效介电常数的实部谐振。研究了根据外部磁场和入射角的传输特性。我们证明,通过改变外部磁场以及入射角,可以有效地调整每个频率处的波的定位长度。随着外部磁场的增加,定位长度的倾角向更大的频率偏移。这里考虑等离子体密度对定位长度的影响。定位长度随着等离子体密度的增加而减小。对于较大的等离子体密度,外部磁场对定位行为的影响会变大。我们还研究了等离子体层宽度具有指数分布的无序结构的局部磁场对外部磁场的依赖性。

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