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KDP晶体离子束清洗下的温度场研究。

Research on temperature field of KDP crystal under ion beam cleaning.

作者信息

Li Furen, Xie Xuhui, Tie Guipeng, Hu Hao, Zhou Lin

出版信息

Appl Opt. 2016 Jun 20;55(18):4888-94. doi: 10.1364/AO.55.004888.

Abstract

KHPO (KDP) crystal is a kind of excellent nonlinear optical component used as a laser frequency conversion unit in a high-power laser system. However, KDP crystal has raised a huge challenge in regards to its fabrication for high precision: KDP crystal has special physical and chemical characteristics. Abrasive-free water-dissolution magnetorheological finishing is used in KDP figuring in our lab. But the iron powders of MRF fluid are easily embedded into the soft surface of KDP crystal, which will greatly decrease the laser-induced damage resistance. This paper proposes to utilize ion beam figuring (IBF) technology to figure and clean the surface of a KDP component. Although IBF has many good performances, the thermal effect control is a headachy problem for the KDP process. To solve this problem, we have established its thermal effect models, which are used to calculate a component's surface temperature and thermal gradient in the whole process. By this way, we can understand how to control a temperature map and its gradient in the IBF process. Many experiments have been done to validate and optimize this method. Finally, a KDP component with the size of 200×200×12  mm is successfully processed by this method.

摘要

磷酸二氢钾(KDP)晶体是一种优良的非线性光学元件,在高功率激光系统中用作激光频率转换单元。然而,KDP晶体在高精度制造方面带来了巨大挑战:KDP晶体具有特殊的物理和化学特性。在我们实验室中,KDP的加工采用无磨料水溶磁流变抛光技术。但磁流变液中的铁粉容易嵌入KDP晶体的软表面,这将大大降低其抗激光损伤能力。本文提出利用离子束加工(IBF)技术对KDP元件表面进行加工和清洗。虽然离子束加工有许多良好的性能,但热效应控制是KDP加工过程中一个令人头疼的问题。为了解决这个问题,我们建立了其热效应模型,用于计算整个过程中元件表面的温度和热梯度。通过这种方式,我们可以了解如何在离子束加工过程中控制温度分布及其梯度。已经进行了许多实验来验证和优化该方法。最后,采用该方法成功加工出尺寸为200×200×12 mm的KDP元件。

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