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FDTD-WireAtenna3
- 采用相互垂直的两个振子构成圆极化天线的FDTD程序.可以计算其圆极化波瓣宽度等天线指标 -perpendicular to each other using the two oscillator constitute a circularly polarized antenna FDTD procedures. Can calculate its lobed circular polarization antennas width
FDTD-WireAtenna3
- 采用相互垂直的两个振子构成圆极化天线的FDTD程序.可以计算其圆极化波瓣宽度等天线指标 -perpendicular to each other using the two oscillator constitute a circularly polarized antenna FDTD procedures. Can calculate its lobed circular polarization antennas width
microstrip_patch_antenna
- 较粗圆柱振子的数值分析及三频双极化微带贴片天线的研究与设计,学位论文-Thick cylindrical vibrator Numerical Analysis and tri-band dual-polarized microstrip patch antenna research and design, dissertations
two_not_noise_RMSE_60
- 在X,y方向分别放水平磁环,在Z轴上放电偶极子,给出信号方位角估计随极化角度和俯仰角的变化的估计性能-In X, y directions are the level of magnetic release, discharge in the Z-axis dipole is given with the polarization angle estimate signal azimuth and elevation changes i
two_three_not_noise_RMSE_90_60
- 比较俯仰角度分别为60°,90°,以及极化参数为60°和90°时的三极子天线和两极子天线的均方根误差-Comparison of tilt angles of 60 °, 90 °, and the polarization of 60 ° and 90 °, three-pole antenna and polarization Antenna root mean square error
ems_pattern
- matlab计算振子天线增益和极化方向。-matlab for antenna
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- 极化子速率对量子点中磁极化子性质的影响.Polaron rate of quantum dots in magnetic polaron properties.-Polaron rate of quantum dots in magnetic polaron properties.
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- 磁场对量子线中束缚极化子激发态性质的影响.-Magnetic field on the bound polaron in a quantum wire properties of the excited state of zip effect
poincarePS
- 给定极化状态的相位描述子和幅度描述子,绘制该极化状态的poincare功率球。源代码是matlab子函数,输入参数两个:极化状态的幅度描述子和相位描述子。还有一张示例图-Given the polarization state of the phase and amplitude descr iptors descr iptors, to draw the polarization state poincare power ball.
量子阱中强耦合束缚极化子的温度效应
- 采用线性组合算符 与变分相结合的方法讨论 了无 限深圣子 阶中强辐合 束搏极化子的温度效应。(By using the method of linear combination operator and variational phase, the temperature effect of the bundle trapped Polaron in the deep convergence of the infinite order
圆柱形量子线中的极化子效应
- 分别采用 LLP 变分方法和微扰方法研究了圆柱形自由量子线的极化子效应, 在计算中考虑了类体纵光学声子模及表面声子模的贡献。(The polaron effects of cylindrical free quantum wires are studied by using the LLP variational method and perturbation method respectively. The contribution