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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Spatiotemporal laser perturbation of competing ionization waves in a neon glow discharge
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Spatiotemporal laser perturbation of competing ionization waves in a neon glow discharge

机译:氖辉光放电中竞争性电离波的时空激光摄动

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The experimental verification of spatiotemporal periodic pulling, a specific but universal phenomenon associated with driven, nonlinear, spatiotemporal systems, is reported as part of a study characterizing the ability of de and chopped laser light to induce periodic pulling in ionization waves propagating in a neon glow-discharge plasma. The degree to which a single-mode laser beam at a metastable transition of 6401 Angstrom (1s(5)-2p(9)) influences the discharge is found to depend on the location and magnitude of the perturbation. Cases of ac (chopping the light) and de perturbation are presented. In a range of chopping frequencies above and below the ionization wave's undriven frequency, the wave can become synchronized to the perturbation. This entrainment range is shown to depend on the frequency difference between the wave and the perturbation, as well as on the perturbation distance from the cathode. Hysteresis is found in the Value of the perturbation frequency associated with transitions into and out of entrainment. Outside of entrainment, periodic pulling of a self-excited, propagating, ionization wave by the laser perturbation is observed. This is a case of frequency pulling, or temporal periodic pulling. Inside of entrainment, the chopped laser light controls the frequency and amplitude of the mode. By properly adjusting the frequency and amplitude of one mode with respect to a second mode, periodic pulling of one ionization wave by the mode-locked, propagating, original ionization wave is demonstrated. This is a case of spatiotemporal pulling, involving both wavelength pulling and frequency pulling. Under proper conditions, competition between temporal and spatiotemporal periodic pulling results in a modulation in the dynamics of the system, a process referred to as dynamics modulation. [References: 44]
机译:作为时空周期性拉动的实验验证,该时空拉动是与驱动的非线性时空系统相关的一种特殊但普遍的现象,是一项研究的一部分,它表征了去离子和斩波后的激光诱导霓虹灯中传播的电离波产生周期性拉动的能力放电等离子体。发现在6401埃(1s(5)-2p(9))的亚稳态跃迁处的单模激光束影响放电的程度取决于扰动的位置和大小。介绍了交流电(斩光)和去扰动的情况。在高于和低于电离波非驱动频率的斩波频率范围内,电波可以变得与扰动同步。示出了该夹带范围取决于波与扰动之间的频率差以及取决于距阴极的扰动距离。在与夹带的过渡有关的摄动频率的值中发现了滞后。在夹带之外,观察到由激光扰动引起的自激传播的电离波的周期性拉动。这是频率拉动或时间周期性拉动的情况。在夹带内部,切碎的激光控制模式的频率和幅度。通过适当地调节一个模式相对于第二模式的频率和振幅,可以证明由锁模的,传播的原始电离波周期性地拉动一个电离波。这是时空拉动的情况,涉及波长拉动和频率拉动。在适当条件下,时间和时空周期性拉动之间的竞争会导致系统动力学的调制,这一过程称为动力学调制。 [参考:44]

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