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首页> 外文期刊>Fusion Science and Technology >DEVELOPMENT OF A SILICON-BASED ELECTRON BEAM TRANSMISSION WINDOW FOR USE IN A KrF EXCIMER LASER SYSTEM
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DEVELOPMENT OF A SILICON-BASED ELECTRON BEAM TRANSMISSION WINDOW FOR USE IN A KrF EXCIMER LASER SYSTEM

机译:基于硅的电子束传输窗口的开发,用于KrF准分子激光系统

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摘要

Princeton Plasma Physics Laboratory, in collaboration with the Naval Research Laboratory, is currently investigating various novel materials (single-crystal silicon, <100>, <110>, and <111>) for use as electron beam transmission windows in a krypton fluoride (KrF) exci-mer laser system. The primary function of the window is to isolate the active medium (excimer gas) from the excitation mechanism (field-emission diodes). The chosen window geometry must accommodate electron energy transfer >80% (750 keV) while maintaining the structural integrity during the mechanical load (1.3- to 2.0-atm base pressure differential, ~0.5-atm cyclic pressure amplitude, 5-Hz repetition rate) and the thermal load across the entire hibachi area (~0.9 W·cm~(-2)). In addition, the window must be chemically resistant to attack by fluorine free radicals (hydrofluoric acid, secondary). In accordance with these structural, functional, and operational parameters, a 22.4-mm square silicon prototype window, coated with 500-nm thin-film silicon nitride (Si_3N_4), has been fabricated. The window consists of 81 square panes 0.019 +- 0.001 mm thick. The stiffened (orthogonal) sections are 0.065 mm wide and 0.500 mm thick (approximate). Assessment of silicon (and silicon nitride) material properties and computer-aided design modeling/analysis of the window design suggest that silicon may be a viable solution to inherent parameters and constraints.
机译:普林斯顿等离子体物理实验室与海军研究实验室合作,目前正在研究各种新型材料(单晶硅,<100>,<110>和<111>),用作氟化as( KrF)准分子激光系统。窗口的主要功能是将活性介质(受激气体)与激励机制(场发射二极管)隔离开。选定的窗口几何形状必须适应> 80%(750 keV)的电子能量传递,同时在机械负载期间保持结构完整性(1.3至2.0 atm的基本压差,〜0.5 atm的循环压力幅度,5 Hz的重复频率)整个希巴奇区域的热负荷(〜0.9 W·cm〜(-2))。此外,窗户必须在化学上抵抗氟自由基(氢氟酸,仲)的侵蚀。根据这些结构,功能和操作参数,已制造出一个涂有500 nm薄膜氮化硅(Si_3N_4)的22.4 mm方形硅原型窗口。窗户由81个0.019±0.001毫米厚的方形窗格组成。加强(正交)部分的宽度为0.065毫米,厚度为0.500毫米(近似值)。对硅(和氮化硅)材料特性的评估以及对窗口设计的计算机辅助设计建模/分析表明,硅可能是解决固有参数和约束条件的可行方法。

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