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Size validity of plasma-metamaterial cloaking monitored by scattering wave in finite-difference time-domain method

机译:时域有限差分法通过散射波监测等离子材料隐身的尺寸有效性

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Limitation of the cloak-size reduction is investigated numerically by a finite-difference time-domain (FDTD) method. A metallic pole that imitates an antenna is cloaked with an anisotropic and parameter-gradient medium against electromagnetic-wave propagation in microwave range. The cloaking structure is a metamaterial submerged in a plasma confined in a vacuum chamber made of glass. The smooth-permittivity plasma can be compressed in the radial direction, which enables us to decrease the size of the cloak. Theoretical analysis is performed numerically by comparing scattering waves in various cases; there exists a high reduction of the scattering wave when the radius of the cloak is larger than a quarter of one wavelength. This result indicates that the required size of the cloaking layer is more than an object scale in the Rayleigh scattering regime.
机译:通过有限差分时域(FDTD)方法对斗篷尺寸减小的局限性进行了数值研究。模仿天线的金属杆被各向异性和参数梯度介质掩盖,以防止电磁波在微波范围内传播。隐身结构是一种超材料,浸没在由玻璃制成的真空室内的等离子体中。平滑电容率等离子体可以在径向上压缩,这使我们能够减小披风的大小。通过比较各种情况下的散射波来进行数值分析。当斗篷的半径大于一个波长的四分之一时,散射波会大大减少。该结果表明,在瑞利散射方案中,隐身层的所需尺寸大于目标尺寸。

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