Narrow stop band microwave filters by using hybrid generalized quasi-periodic photonic crystals
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Narrow stop band microwave filters by using hybrid generalized quasi-periodic photonic crystals

机译:使用混合通用的准周期性光子晶体窄止动带微波滤光器

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Highlights?Photonic polychromatic filters that cover the microwave frequency range are proposed.?Hybrid generalized photonic structures permits us to obtain microwave filters.?The number of photonic band gaps relies on the generalized structures’ parameters.?The positions of the transmission peaks depend on generalized structures’ parameters.AbstractUsing the transfer matrix method approach (TMM), the microwave transmission spectra in hybrid quasi-periodic multilayer photonic structures are studied. These structures are formed by concatenating several quasi-periodic sequences such as the generalized Cantor (GC (a, b, c)), generalized Fibonacci (GF (m, n)) and generalized Thue–Morse (GTM (m, n)). The results are presented for a normal incident wave with transverse electric (TE) polarization. The optimization of the sequences’ parameters (a, b, c, mandn) permits us to obtain polychromatic filters that cover the frequency range of Global Systems for Mobile Communication (GSM). The manipulation of these parameters fixes the number of photonic band gaps (PBGs) and the position of the transmission peaks.]]>
机译:<![cdata [ 突出显示 覆盖微波频率范围的光子多色滤光片。 混合通用光子结构允许我们获得微波滤波器。 光子频带间隙的数量依赖于广义结构的参数。 传输峰的位置取决于广义结构的参数。 < / ce:abstract-sec> Abstract 使用传输矩阵方法方法(tmm),在混合准周期性多层光子结构中的微波传输光谱研究过。这些结构是通过连接若干准周期序列(例如广义陈列(GC( A,B,C ))形成的,广义fibonacci(gf( m, n ))和广义thue-morse(gtm( m,n ))。用横向电气(TE)极化的正常入射波提出了结果。序列的优化参数( a,b,c,c,m n )允许我们获得覆盖频率的多色滤波器全球移动通信系统(GSM)。这些参数的操纵修复了光子带间隙(PBG)的数量和传输峰的位置。 ]]>

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