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Propagation of Short Microwaves and their Nonlinear Interactions with 3DArrays of Magnetically Functionalized Carbon Nanotubes

机译:短微波传播及其与磁官能化碳纳米管3DARRAYS的非线性相互作用

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Propagation of microwaves and their nonlinear interactions with the 3D arrays of magnetically functionalized carbon nanotubes (MFCNTs) are simulated by solving the Maxwell's equations complemented by the Landau-Lifshitz one and with the electromagnetic (EM) boundary conditions. Using the numerical method of autonomous blocks with the Floquetchannels, the complex wave numbers of clockwise and counterclockwise polarized EM waves in periodic 3D arrays of MFCNTs for several values of the filling factor of magnetic nanoparticles are calculated depending on the bias magnetic field. The nonlinearity thresholds of array of MNCNTs are determined by computing the bifurcation points of the nonlinear Maxwell's operator.
机译:通过求解由Landau-Lifshitz One和电磁(EM)边界条件的麦克风的等式来模拟微波和其非线性相互作用与磁官能化碳纳米管(MFCNT)的3D阵列进行模拟。利用具有浮动箱的自主块的数值方法,根据偏置磁场计算磁性纳米颗粒的若干值的周期性3D阵列中的顺时针和逆时针偏振EM波的复杂波数。通过计算非线性Maxwell的运算符的分叉点来确定MNCNT阵列的非线性阈值。

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