首页> 外文期刊>Journal of Microlithography, Microfabrication, and Microsystems. (JM3) >Lens-cementing technology used in optical systems of deep-ultroviolet wavelength regions
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Lens-cementing technology used in optical systems of deep-ultroviolet wavelength regions

机译:用于深紫外波长区域的光学系统中的透镜粘接技术

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摘要

In this work, a newly developed optical lens cementing technology is reported. A fluoride material is used as an optical cement that can reduce damage from deep-ultraviolet (DUV) radiation. The degradation of transmittance and the surface quality of the cemented optical elements, including adhesive used for cementing, are evaluated after prolonged DUV irradiation. It is shown that with a 248-nm wavelength, this cement works quite well, up to 1000 h of operation, and the change in transmittance is negligible where average irradiation power is within 27 to 37 mW/cm(2). Hence for all practical purposes, the use of this cement in microscope objectives is quite acceptable for 248-nm applications, thus confirming that this cementing technology is satisfactory and meets the performance requirement of DUV inspection systems. (C) 2007 Society of Photo-Optical Instrumentation Engineers.
机译:在这项工作中,报道了一种新开发的光学透镜粘合技术。氟化物材料用作光学胶粘剂,可减少深紫外线(DUV)辐射造成的损坏。在长时间的DUV照射后,评估包括光学胶粘剂在内的光学胶粘剂的透射率和表面质量的下降。结果表明,在248 nm的波长下,这种胶粘剂在长达1000 h的工作时间内表现良好,在平均辐照功率在27至37 mW / cm(2)之内的情况下,透射率的变化可以忽略不计。因此,出于所有实际目的,这种胶粘剂在显微镜物镜中的使用对于248 nm应用是完全可以接受的,因此证实了这种胶粘技术是令人满意的,并且满足DUV检查系统的性能要求。 (C)2007年光电仪器工程师协会。

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