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Applications of the gas discharge sustained by the powerful radiation of THz gyrotrons

机译:气体放电的应用受到Thz陀螺仪的强大辐射

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The terahertz frequency range currently remains the least studied from the point of view of gas-discharge physics. Recent progress in its mastering is associated, first of all, with the creation of powerful sources of terahertz radiation - gyrotrons. Nevertheless, the discharge sustained by the powerful radiation of the terahertz frequency range is of interest not only from the fundamental point of view (because of its lack of knowledge), but also from the applied one. This paper presents results of investigations aimed at studying the point-like THz discharge as a source of vacuum ultraviolet radiation and at research of CW THz plasma torch existing at atmospheric pressure and therefore having promising applications in various fields: plasma medicine, plasma chemistry, material processing etc. It is shown that it is possible to create a point-like plasma in an inhomogeneous gas flow with the density above the cut-off one (4·10~(15) cm~(-3) for 0.67 THz). It has been demonstrated that such plasma is an effective source of VUV and EUV radiation. Investigations of the atmospheric plasma torch, sustained by CW sub-terahertz radiation (1 kW @ 0.26 THz), demonstrated the possibility of the creation dense non-equilibrium plasma (2·10~(15) cm~(-3)) with electron temperature in the range from 1 to 2 eV.
机译:从气体放电物理学的角度来看,太赫兹频率范围仍然是最受研究的。最近的掌握进展是关联的,首先是创建了太赫兹辐射的强大来源 - 陀螺仪。尽管如此,不仅来自太赫兹频率范围的强大辐射的放电不仅是感兴趣的,而不仅仅是从基本的角度(由于它缺乏知识),而且来自所应用的。本文介绍了旨在研究点击点THz放电作为真空紫外线源的源,以及在大气压下存在的CW THz等离子炬的研究以及各种领域的有前途的应用:血浆医学,等离子体化学,材料处理等示出说明可以在不均匀的气体流中产生点状等离子体,其密度为截止值(4·10〜(15)cm〜(-3)0.67六)。已经证明这种血浆是VUV和EUV辐射的有效来源。由CW次太赫兹辐射(1 kW @ 0.26 ZHz)持续的大气等离子体火炬的研究证明了具有电子的产生致密的非平衡等离子体(2·10〜(15)cm〜(-3))的可能性温度范围为1至2eV。

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