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Use of power spectral density (PSD) functions in specifying optics for the National Ignition Facility

机译:使用功率谱密度(PSD)功能指定国家点火装置的光学元件

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Abstract: In the second half of the 1990's, LLNL and others will be designing and beginning construction of the National Ignition Facility. This new laser will be capable of producing the worlds first controlled fusion ignition and burn, completing a vital milestone on the path of Fusion Energy. This facility will use more than 7,000 optical components, most of which have a rectangular aperture, which measure greater than 600 mm on the diagonal. In order to optimize the performance versus cost of the laser system, we have determined that specifications based on the Power Spectral Density (PSD) functions are the most effective for controlling mid-spatial wavelength errors. The draft optics specifications based on a combination of PSD and conventional roughness and P-V requirements are presented, with a discussion of their origins. The emphasis is on the application of a PSD function for transmitted wavefront optical specifications, and the benefits thereof. The PSD function is the most appropriate way to characterize transmitted wavefront errors with spatial frequencies ranging from several centimeters to a few hundred nanometers, with amplitudes in the $lambda@/100 regime. Such errors are commonly generated by cost effective, deterministic finishing technologies, and can be damaging to the laser, as well as causing unnecessary energy loss and inability to focus, in a high energy laser application. In addition, periodic errors can occur as a result of errors at other steps in the fabrication process, such as machine vibration in a fixed abrasive step, or material homogeneity ripple. The control of such errors will be essential to the construction of future high energy lasers.!12
机译:摘要:在1990年代的下半年,LLNL和其他公司将设计并开始建造国家点火装置。这种新型激光器将能够产生世界上第一个可控的聚变点火和燃烧,完成了聚变能量道路上的重要里程碑。该设施将使用7,000多个光学元件,其中大多数具有矩形孔径,对角线上的孔径大于600 mm。为了优化激光系统的性能和成本,我们确定基于功率谱密度(PSD)函数的规范对于控制中空间波长误差最有效。提出了基于PSD和常规粗糙度以及P-V要求的光学规范草案,并讨论了其起源。重点是将PSD函数用于透射的波前光学规范及其优势。 PSD功能是表征传输波前误差的最合适方法,其空间频率范围从几厘米到几百纳米,振幅在$λ/ 100范围内。这种错误通常是由具有成本效益的确定性精加工技术产生的,并且可能对激光造成损害,并在高能量激光应用中造成不必要的能量损失和无法聚焦。另外,由于制造过程中其他步骤的错误,例如固定研磨步骤中的机器振动或材料均匀性波动,会产生周期性错误。控制此类错误对于构建未来的高能激光器至关重要!12

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