Ito H, Rajyaguru C, Yugami N, Nishida Y, Hosoya T
Energy and Environmental Science, Graduate School of Engineering, Utsunomiya University, 7-1-2 Yoto, Utsunomiya, Tochigi 321-8585, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Jun;69(6 Pt 2):066406. doi: 10.1103/PhysRevE.69.066406. Epub 2004 Jun 4.
The propagation characteristics of a high-power microwave [electromagnetic (em) wave] in a plasma waveguide are reported. The plasma waveguide is formed by expanding plasmas via the ponderomotive force of the high-power microwave and the microwave pulse remains trapped within the plasma waveguide and is guided in it. With the increase of the incident microwave power, the width of the plasma waveguide increases and the half width of the radial electric field distribution decreases. This shows that the em wave modifies the refractive index of the plasma waveguide area. For a plasma waveguide with narrower width, the microwave propagates along the plasma waveguide at the fundamental TE mode, while as the waveguide width increases the higher mode component starts appearing. Analytical treatment to the propagation of the electromagnetic wave in a dielectric waveguide having a step-index profile and the numerical calculations for the radial distribution of the electric field show fairly good agreement with the results observed in the present experiments.
报道了高功率微波[电磁波(em波)]在等离子体波导中的传播特性。等离子体波导是通过高功率微波的有质动力使等离子体膨胀而形成的,微波脉冲被困在等离子体波导内并在其中传播。随着入射微波功率的增加,等离子体波导的宽度增加,径向电场分布的半高宽减小。这表明电磁波改变了等离子体波导区域的折射率。对于宽度较窄的等离子体波导,微波以基模TE模式沿等离子体波导传播,而随着波导宽度增加,高阶模分量开始出现。对具有阶跃折射率分布的介质波导中电磁波传播的解析处理以及电场径向分布的数值计算与本实验观察结果显示出相当好的一致性。