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Initial Testing Of A Two-dimensional Computer Code For Microwave-induced Surface Breakdown In Air

机译:用于微波诱导的空气中的两维计算机代码的初始测试

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A two-dimensional, electromagnetic, electron fluid computer code for microwave-induced surface breakdown in air is developed. This code is based on finite difference approximations to Maxwell's curl equations for TM/sub om/. modes in cylindrical waveguides and electron conservation equations for continuity, momentum, and energy. An implicit, block- iterative, optionally stiff, variable step integrator solves the global set of equations. A 2.856 GHz, 1 MV/m amplitude, radial electric field pulse in a highly dispersive waveguide impinges on two different model field emission structures with the same emission threshold (0.2 MV/m) and rate (10/sup 11//(m/sup 3/-s)). One structure is a perfectly conducting flat end plate; the other is a perfectly conducting axial stub of 0.413 cm radius by 1.69 cm length, centered on a flat end plate. Pressures vary from 50-800 torr. In both cases, peak electric fields occur where expected, initial electron generation is from field emission, and later generation is from avalanching in air. The location of peak generation is at the field maxima. The amount of late time density varies qualitatively with pressure as theoretically expected.
机译:开发了一种用于微波诱导的空气中的微波诱导的表面击穿的二维电磁的电子流体计算机代码。此代码基于有限差值近似到MaxWell的TM / SUB OM /的卷曲方程。用于连续性,动量和能量的圆柱形波导和电子节约方程的模式。隐式,封锁,可选的变量步骤集成器解决了全局方程集。 2.856GHz,1 MV / M幅度,高度分散的波导中的径向电场脉冲在两个不同的模型场发射结构上,具有相同的发射阈值(0.2mV / m)和速率(10 / sup 11 //(m / Sup 3 / -s))。一种结构是完美的平端板;另一个是0.413厘米半径的完全导电的轴向短截线,长度为1.69厘米长,以平端板为中心。压力在50-800托时变化。在这两种情况下,峰值电场发生在预期的情况下,初始电子产生是从场发射的,后来的发电是空气中的雪崩。峰代的位置位于野外最大值。后续时间密度的数量在理论上预期的压力变化。

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