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Self-initiated volume discharge in mixtures of SF6 with hydrocarbons to excite nonchain hf lasers

机译:SF6与碳氢化合物混合物中的自引发体积放电,以激发非链高频激光

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Abstract: The paper studies a self-sustained volume discharge without preionization-self-initiated volume discharge (SIVD) - to excite non-chain HF lasers on SF$-6$/-C$-2$/H$-6$/ mixtures. Once initiated by a local discharge gap breakdown, SIVD is found to propagate then over the whole gap normally to the applied electric field through successively starting diffuse overlapping channels at a voltage close to the quasi- stationary value. With forming new channels, the current through those previously originated decreases. The volume occupied by SIVD tends to expand with increasing the energy released within the discharge plasma, whereas a discharge bounded by a dielectric surface shows a simultaneous increase both in burning voltage and current. All these features combined allow a concept to be put forward of the existence of certain restriction mechanisms depending on the specific energy released and not permitting the total deposited energy to pass through a single channel. It is suggested that SF$-6$/ dissociation by electron impact and the electron attachment to vibrationally excited SF$-6$/ molecules are just those mechanisms. Simple analytical models have been developed allowing these mechanisms to be qualitatively described.!15
机译:摘要:本文研究了无预电离-自发体积放电(SIVD)的自持体积放电-在SF $ -6 $ /-C $ -2 $ / H $ -6 $ /上激发非链式HF激光器混合物。一旦通过局部放电间隙击穿而启动,发现SIVD然后通过在接近准静态值的电压下连续启动扩散重叠通道,然后在整个间隙上正常传播到所施加的电场。随着形成新的通道,流过先前产生的电流减小了。随着放电等离子体中释放的能量的增加,SIVD占据的体积趋于扩大,而以电介质表面为边界的放电则显示燃烧电压和电流同时增加。所有这些特征的组合允许根据所释放的特定能量提出某些限制机制的存在的概念,并且不允许总沉积能量通过单个通道。有人认为,SF $ -6 $ /通过电子撞击而解离,以及电子与振动激发的SF $ -6 $ /分子的附着只是这些机理。已开发出简单的分析模型,可以对这些机制进行定性描述!15

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