1024在线观看国产天堂-1024亚洲精品国产-1024亚洲-1024香蕉国产在线视频-1024手机看片国产旧版你懂的-1024你懂的国产精品

撥號18861759551

你的位置:首頁 > 技術文章 > 單色光學像差

技術文章

單色光學像差

技術文章

Chromatic and Monochromatic Optical Aberrations

Designing optical systems is never an easy task; even perfectly designed systems contain optical aberrations. The trick is in understanding and correcting for these optical aberrations in order to create an optimal system. To do so, consider the types of aberrations present in optical systems.

 

Optical aberrations are deviations from a perfect, mathematical model. It is important to note that they are not caused by any physical, optical, or mechanical flaws. Rather, they can be caused by the lens shape itself, or placement of optical elements within a system, due to the wave nature of light. Optical systems are typically designed using first order or paraxial optics in order to calculate image size and location. Paraxial optics does not take into account aberrations; it treats light as a ray, and therefore omits the wave phenomena that cause aberrations.

 

Optical aberrations are named and characterized in several different ways. For simplicity, consider aberrations divided into two groups: chromatic aberrations (present when using more than one wavelength of light) and monochromatic aberrations (present with a single wavelength of light).

 

CHROMATIC ABERRATIONS

Chromatic aberrations are further classified into two types: transverse and longitudinal. Longitudinal can then be either primary or secondary longitudinal chromatic aberration.

 

Transverse chromatic aberration (TCA) occurs when the size of the image changes with wavelength. In other words, when white light is used, red, yellow, and blue wavelengths focus at separate points in a vertical plane (Figure 1). In optical terms, 656.3nm (red) is referred to as C light, 587.6nm (yellow) as d light, and 486.1nm (blue) as F light. These designations arise from their hydrogen emission lines for C & F lights and helium for d light.

 

Longitudinal chromatic aberration (LCA) occurs when different wavelengths focus at different points along the horizontal optical axis as a result of dispersion properties of the glass. The refractive index of a glass is wavelength dependent, so it has a slightly different effect on where each wavelength of light focuses, resulting in separate focal points for F, d, and C light along a horizontal plane (Figure 2).

Figure 1: Transverse Chromatic Aberration of a Single Positive Lens

Figure 2: Longitudinal Chromatic Aberration of a Single Positive Lens

Figure 3: Achromatic Doublet Lens Correcting for Primary Longitudinal Chromatic Aberration

Primary LCA correction is usually performed using an achromatic doublet lens, which is made of positive and negative lens elements of different refractive indices (Figure 3). This type of correction forces F and C light to focus at the same place, but has little effect on the location of the d light focus, which leaves residual chromatic aberration.

 

In order to correct this residual LCA, a more complex lens or lens system must be used to shift the focus of d light to be at the same axial location as the F and C focus. This type of correction is usually achieved by using an apochromatic lens, which is corrected such that three wavelengths focus at the same point, or a superachromatic lens, which is corrected such that four wavelengths focus at the same point. Figures 4a – 4d show a comparison in focus shift between the aforementioned types of lens systems.

Figure 4a: Focus Shift Illustration of No Aberration Correction with a Singlet Lens

Figure 4b: Focus Shift Illustration of Primary Longitudinal Chromatic Aberration Correction with an Achromatic Lens

Figure 4c: Focus Shift Illustration of Secondary Longitudinal Chromatic Aberration Correction with an Apochromatic Lens

Figure 4d: Focus Shift Illustration of Secondary Longitudinal Chromatic Aberration Correction with a Superachromatic Lens

 

MONOCHROMATIC ABERRATIONS

By far, monochromatic aberrations outnumber chromatic aberrations. Therefore, they are labeled with wavefront coefficients in addition to names. For example, spherical aberration has a wavefront coefficient of W040. This wavefront coefficient arises from the mathematical summation that gives the actual difference between the perfect and aberrated wavefronts:

In Equation 1, Wklm is the wavefront coefficient, H is the normalized image height, ρ is the location in the pupil, and θ is the angle between the two, which arrives due to the dot product of the two vectors. Once the wavefront coefficient is known, the order number can be determined by adding l and k. However, this will always create an even number. Since optical aberrations are often referred to as first, third, fifth order, etc, if k + l = 2, it is a first order aberration, if k + l = 4, it is a third order, etc. Generally, only first and third order aberrations are necessary for system analysis. Higher order aberrations exist, but are not commonly corrected in optical systems because of the complication this adds to the system. Usually, the complexity of correcting higher order aberrations is not worth the image quality improvement. Common third order monochromatic aberrations and their corresponding coefficients and equations are listed in table 1.

Aberration Name

Wavefront Coefficient

Equation

Tilt

W111

W111Hρcos(θ)

Defocus

W020

W020ρ2

Spherical

W040

W040ρ4

Coma

W131

W131Hρ3cos(θ)

Astigmatism

W222

W222H2ρ2cos2(θ)

Field Curvature

W220

W220H2ρ2

Disortion

W311

W311H3ρcos(θ)

Table 1: Common Third Order Optical Aberrations

 

Optical and imaging systems can contain multiple combinations of optical aberrations. These optical aberrations can be classified into either chromatic or monochromatic. Aberrations will always degrade image quality, and a very large portion of optical design is focused on recognizing and reducing these aberrations. The first step in correcting for aberrations is to understand the different types and how they affect system performance. With this knowledge, one can then design the best system possible. For in-depth information on identifying and correcting for chromatic and monochromatic aberrations, view Comparison of Optical Aberrations.

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 © 2025 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
亚洲中文无码A∨在线观看| 欧美日韩精品一区二区在线播放 | 男朋友想吻我腿中间那个部位| JAGNEXSMAX在日本| 上面一个摸下面一个手念什么| 国产午夜亚洲精品国产成人小说| 亚洲中文字幕成人无码| 欧美人伦禁忌DVD| 国产 国语对白 露脸| 亚洲高清中文字幕在线看不卡| 免费观看无遮挡WWW的视频| 成人无码影片精品久久久| 亚洲AV日韩AV成人AV| 鲁大师在线观看视频在线播放 | 曰批免费视频免费无码软件| 人妻在线日韩免费视频| 国产色母和进口色母区别| 尹人香蕉久久99天天拍| 日本人妻丰满大屁股a v| 国产亚洲欧美日韩在线一区二区三 | 少妇高潮喷水惨叫久久久久电影 | 偷拍农村老熟妇XXXXX7视频| 九月婷婷亚洲综合成人| JIZZJIZZJIZZ日本老| 性刺激性色爽爱小说| 可以C女性角色的游戏手游| 尺码最大的国产SUV| 亚洲国产成人精品青青草原| 欧美人与禽交片在线观看| 国产精品视频一区二区三区无码| 一二三四视频中文字幕| 色噜噜AV男人的天堂| 精品人妻无码专区在中文字幕 | 一本一道久久综合狠狠老| 日本熟妇人妻XXXXX视频| 极品YIN荡人妻合集H| MONSTER无删减动漫| 亚洲AV成人网站在线播放| 免费国精产品WNW2544| 国产成人无码AV| 婬乱丰满熟妇XXXXⅩ性| 色欲网久久久久久久久久久久久久| 精品久久久久久无码人妻VR| 边做奶水边喷H高H共妻| 亚洲国产成人一区二区精品区| 久久国产亚洲精品无码| 欧美人与动牲交A免费观看| 国产福利一区二区久久| 一边做饭一边躁狂我会怎么样呢| 日本熟妇人妻XXXXX-欢迎您| 精品久久8X国产免费观看| JIZZJIZZ免费看国产| 亚洲AV无码一区二区三区大黄瓜 | 亚洲AV永久无码精品主页丝瓜| 欧美激情在线播放| 韩国理论电费2023最| 啊灬啊灬啊灬高潮了视频| 亚洲国产精品VA在线看黑人| 日本熟妇厨房XXXXX乱| 久久精品国产99久久久香蕉| 夫妇交换聚会群4P疯狂大战| 在线天堂おっさんとわたしWWW| 无码OL丝袜高跟秘书在线观看不| 牧场ⅩXXXBBBB变态另类| 国产亚洲欧美日韩在线一区二区三 | 久久综合亚洲色一区二区三区| 寡妇两腿间黑黑的毛毛是什么| 中国国语毛片免费观看视频| 香蕉尹人综合在线观看| 欧美乱大交XXXXX| 精品国产AⅤ一区二区三区V视界| 成人免费无码H在线观看不卡| 伊人精品成人久久综合| 无码人妻啪啪一区二区 | 亚洲综合精品伊人久久| 天堂√最新版中文在线地址| 美女裸体无遮挡永久免费视频AP| 国产午夜无码片在线观看影院| ぱらだいす天堂中文网WWW| 亚洲色无码国产精品网站可下载| 天天噜日日噜狠狠噜免费| 欧美 日韩 国产 另类 图片区 | 亚洲AV成人无码一区在线观看| 人妻无码ΑV中文字幕久久| 久久久久无码精品亚洲日韩 | 人人妻人人澡人人爽人人| 久久久久久久精品国产免费…| 国产精品久久久久无码AV| H无码动漫在线观看人| 亚洲熟妇无码久久精品| 无码国产精品一区二区免费久久| 欧洲熟妇色XXXX欧美老妇性| 久久久久久久精品国产亚洲| 国产午夜福利亚洲第一| 波多野结衣在线观看av| 中文字幕乱码人妻一区二区三区| 亚洲AV无码专区在线播放| 日日噜噜夜夜狠狠视频无码| 内射人妻无码色AB麻豆| 黑色丝袜老师自慰喷水浪潮免费| 亚洲国产精品久久无码中文字蜜桃| 色婷婷成人AV电影| 欧美 丝袜 自拍 制服 另类| 久久精品国产亚洲精品| 国产三级农村妇女在线| 动漫高H纯肉无码视频在线观看 | 永久免费的AV在线网无码| 亚洲AV无码成人精品| 四虎影视新紧急入口| 欧美一区二区三区不卡| 久久综合精品国产丝袜长腿| 狠狠色婷婷久久一区二区| 国产成人午夜精品影院| 成人av在线播放| 99精品全国免费观看视频| 夜夜嗨AV熟妇人妻涩爱AV | 夫では満足できない人妻| www.AV无码| 自拍偷自拍亚洲精品10P | 狠狠色婷婷久久一区二区| 国产精品久久无码不卡| 当着老公的面被别人欺负该怎么办| BGMBGMBGM老妇视频| 在线A级毛片无码免费真人| 亚洲欧洲日产国码无码久久99| 性一交一无一伦一精一品| 天黑黑影院免费观看视频在线播放| 人妻少妇无码中文幕久久| 你下水好多下水道BD| 久久久久亚洲AV无码专区网站| 黑人巨大VIDEOS极度另类| 国产裸体歌舞一区二区| 国产69精品久久久久99尤物| 边喂奶边中出的人妻| AV香港经典A毛片免费观看 | 娇小BBW搡BBBB搡BBBB| 国产热A欧美热A在线视频| Z0OZO0人善之交另类| 97精品伊人久久大香线蕉APP| 在线麻豆精东9制片厂AV影现网| 亚洲综合无码一区二区三区不卡| 亚洲国产欧美在线人成APP| 亚洲AV无码乱码忘忧草亚洲人| 无码精品一区二区三区视频色欲网 | 日本特黄特色AAA大片免费| 欧美致敬很多经典的黑白MV| 女人18毛片A级毛片嫰阝| 免费看国产成年无码AV片| 老外免费CSGO交易网站有哪些| 久久久久蜜桃精品成人片| 精品人妻少妇一区二区| 精品久久久久久无码人妻热| 妓女妓女影院妓女影库妓女网| 国产性生交XXXXX免费| 国产亲子伦ⅩⅩⅩⅩX熟妇| 国产精品毛片久久久久久久| 国产成人无码精品XXXX网站| 国产成人精品免费午夜APP | 大象国精产品一品二品在线| 成人无码区免费AⅤ片| 成片人卡1卡2卡3手机免费看| 草草浮力地址线路①屁屁影院| 波多野结衣美乳人妻HD电影欧美 | FREEHDⅩXXXXSEX| YINLUAN小镇公交车尺寸| YSL千人千色T9T9T90| 边做饭边被躁我和邻居的视频| 差差差很疼30分钟的视频大全| 超碰色偷偷男人的天堂| 成人无码区免费视频观看 | 欧美成人高清WW| 欧美怡春院一区二区三区| 人妻丰满熟妇AV无码区乱| 日本三级黄色视频| 色婷婷AV一区二区三区4k岛国| 熟女人妇 成熟妇女系列视频| 天天躁日日躁很很很躁| 无遮挡H肉动漫在线播放| 性色AV.网站免费| 亚洲AV永久无码精品九之| 亚洲乱码日产精品BD| 亚洲中文字幕精品久久| 正在播放国产剧情亂倫| 77色午夜成人影院综合网| WW久久综合久中文字幕| 成 人 黄 色 网 站 在线观| 高清精品一区二区三区| 国产精品无码2021在线观看| 国产自偷在线拍精品热乐播AV| 精产国品一二三区别9977| 久久久精品人妻无码专区不卡| 麻豆久久亚洲AV成人无码电影| 欧美成人精品一区二区三区| 人妻少妇看A偷人无码精品视频| 日韩无人区码卡二卡3卡一| 挺进绝色老师的紧窄小肉| 小雪被老汉玩遍各种方式电影 | 午夜无码A级毛片免费视频| 亚洲国产成人一区二区精品区| 亚洲一本到无码AV中文字幕|