久久视频-国产欧美日韩另类在线-中文不卡视频-97精品久久久久久久久2020-九一国产在线-亚洲 中文 欧美-成人国产精品久久-91精品国产高清91久久久久久-青草精品-久久99影视-精品国产网站-国产精品日韩在线观看-亚洲综合精品第一页-久久久久电影网站-在线免费a视频-欧美日本色-欧美日韩在线亚洲综合国产人-麻豆影视大全高清免费追剧-欧美第一页在线-97资源视频总站老师-欧美精品99久久-国产亚洲av每日更新-久久久久久99精品久久久-91yy在线影院免费看-久久免费久久-国产日韩理论片-久久91-一区二区三区视频在线免费观看-日韩免费片-久久精品观看

撥號18861759551

你的位置:首頁 > 技術文章 > 非軸拋物面鏡的粗糙度

技術文章

非軸拋物面鏡的粗糙度

技術文章

Roughness of Diamond Turned Off-Axis Parabolic Mirrors

Single Point Diamond Turning is a manufacturing technique for producing off-axis parabolic (OAP) mirrors, off-axis elliptical (OAE) mirrors, and other precision metal optical components. While the goal of any optical manufacturing technique is to create an ideal surface that does not deviate from its theoretical surface profile, Diamond Turning, like other manufacturing techniques, is subject to manufacturing errors that prevent the ideal surface from being produced. These surface errors can typically be classified by their frequency content, specifically as low, mid, or high spatial frequency errors.

 

Spatial Frequency Errors

Low spatial frequency errors, described by terms like surface figure, irregularity, and even Zernike polynomials, force an incoming wave to deform and take on a wavefront similar to the profile of the optic. Mid spatial frequency errors, or ripples, are typically caused by a tool removing or shaping material on a surface. Mid frequency errors occur periodically with roughly the same spacing as the stepping distance of the tool used to alter the surface, and can adversely affect image quality.

 

High spatial frequency errors, often referred to as roughness and measured in Angstrom RMS, tend to cause light to scatter unintentionally. The greater the error, the wider the potential scatter angle. This form of scattering is wavelength dependent and scatter angles increase as the wavelength of incident light is decreased.

 

In metal manufacturing processes, roughness is often associated with the “shininess” of a part. The surface of rough parts typically appear hazy or cloudy, but if a part is particularly rough, a greater percentage of light will deviate from its intended target. When a rough surface is used as a focusing optical element, an overall decrease in the MTF of an image occurs. Rough surfaces can even lead to an overall decrease in throughput.

 

Diamond Turning

Diamond turned optical components are polished differently than traditionally manufactured optical components. Diamond turning is a manufacturing technique that allows for the creation of unique and precise non-spherical glass and metal shapes, but suffers from the possibility of poor surface roughness. If care is not taken during design and diamond turning, a surface can have a roughness of hundreds of Angstroms (Å). Because scatter in the high frequency domain is wavelength dependent, a roughness of a few hundred Å may be unsuitable for visible light applications, whereas little to no scatter may exist for systems operating in the Infrared (IR). When optics are carefully designed and skillfully diamond turned, surface roughness less than 100 Å can be achieved. With a lower surface roughness, an optic will have minimized scatter in the visible spectrum. However, if an application utilizes light from the lower end of the visible spectrum, or even the Ultraviolet (UV), 100 Å may present an unacceptable level of scatter. The roughness of the highest precision diamond turned components can be brought below 50Å and can be further improved by nickel plating a surface. It is generally accepted that polished glass will have a roughness of between 20-50 Å.

 

The figures below provide a visualization of the difference between a surface with <50 Å roughness and a surface with <100 Å roughness.

Figure 1: Surface Map of <50 Å RMS Roughness

Figure 2: Surface Map <100 Å RMS Roughness

 

Edmund Optics’ optical design and diamond turning staff are experienced at minimizing roughness and other errors introduced in the diamond turning process. Along with our standard offering of diamond turned mirrors, customized solutions are available including custom sizes and shapes and a variety of metal mirror coatings. Contact us today to speak with an expert or receive a quote.

聯系我們

地址:江蘇省江陰市人民東路1091號1017室 傳真:0510-68836817 Email:sales@rympo.com
24小時在線客服,為您服務!

版權所有 © 2026 江陰韻翔光電技術有限公司 備案號:蘇ICP備16003332號-1 技術支持:化工儀器網 管理登陸 GoogleSitemap

在線咨詢
QQ客服
QQ:17041053
電話咨詢
0510-68836815
關注微信
主站蜘蛛池模板: 亚洲欧美日韩精品一区二区 | 免费看一级特黄a大片 | 特级aaa毛片 | 日韩影视精品 | 日本性动态图 | 97香蕉久久超级碰碰高清版 | 欧美午夜a | 伊人五月天 | 国产黄色片免费在线观看 | 少妇性bbb搡bbb爽爽爽欧美 | 日本大片免费观看在线 | 91在线看视频免费 | 国产在线不卡一区 | 精品久久久久国产 | 国产精品免费久久久久久 | 久久人人精品 | 国产视频一区二区在线播放 | 日韩高清av | 欧洲精品视频一区二区 | 欧美精品久久久久性色 | 2019中文最近的2019中文在线 | 激情导航 | 在线观看蜜桃视频 | 久久一区精品 | 国语精品视频 | 久久激情视频免费观看 | 91久久久久久久一区二区 | 中文字幕人成一区 | 亚洲一级电影视频 | 国产精品中文字幕av | 九九在线播放 | 99热都是精品 | 亚洲精品视频偷拍 | 国产伦理久久精品久久久久_ | 色婷婷视频在线观看 | 亚洲欧美国产日韩在线观看 | 黄网站a| av在线免费播放网站 | 日本性动态图 | 国产精品热 | 日韩视频一 | 国产拍揄自揄精品视频麻豆 | 黄影院| 国产在线2020| 亚洲婷久久| 国产极品尤物在线 | 91精品国自产拍天天拍 | 亚洲视频综合 | 最新精品视频在线 | 亚洲人成人天堂h久久 | 在线观看深夜视频 | 久久综合五月天婷婷伊人 | 国产精品18久久久久久久网站 | 日韩欧美视频在线 | 中文字幕欧美日韩va免费视频 | 久草热视频| 午夜久久久久久久久久久 | 91在线九色 | 在线观看免费av网站 | 色综合久久久久 | 99综合电影在线视频 | 欧美视频一区二 | 99精品在线播放 | 久久久久国产一区二区 | 国产亚洲字幕 | 日韩久久久久 | 久久精品一二三区 | 久久久久欠精品国产毛片国产毛生 | 欧美日韩91 | 成人在线电影观看 | 99 国产精品| 九九九九九九精品任你躁 | 国产一二三在线视频 | 国产精品一区二区 91 | 伊人五月天av| 精品国产电影一区二区 | 日本在线观看一区二区 | 久草电影网| 天天操天天操天天操 | 丁香av | 狠狠狠狠狠狠狠干 | 久草免费电影 | 91麻豆精品国产91久久久更新时间 | 国产一区二区免费看 | 精品国产一区二区三区不卡 | 久久视频精品在线观看 |