| infotek_tw |
2008-04-07 14:26 |
《FRED 快速学习手册》-书籍目录
《FRED 快速学习手册》-书籍目录 ^ =/?<C4 6m-:F.k1( 1 马克苏托夫望远镜系统设计(Maksutov Telescope Example) B
\_d5WJ< [yYH>~SuwZ 本章节将介绍FRED软件和熟悉操作接口 Ha=_u+@ u6iU[5 l The goal of this example is to make the user familiar with FRED’s interface >2| [EZ
pT3X/ra 1.1 使用透镜和面镜Using lenses and mirrors ~<2 IIR$H ==h|+NFa 1.2 定义使用者的对象Defining custom elements /slm
]' #90[PASx 1.3 在不同的坐标系定义组件的位置Specifying the location of elements in different coordinate systems S/nj5Lh O2`oe4."vd 1.4 简单光源的设定Setting up a simple source jSwtf &*G5J7%w 1.5 光线追迹Raytracing xb+RRTgj `x{.z=xC 1.6 光斑图的模拟结果Calculating a spot diagram c%AFo]H q3AJwELXw 2 反射罩与积分柱应用(Reflector and Integrator Example) MG7 ?N # Q)LXL.0h 本章节将指导如何操作FRED及利用线段建立光学组件 d}{LM!s Ci7P%]9 l The goal of this example is to make the user familiar with FRED’s interface as well as introduce curve-based geometry O6m.t%* {)
:%WnM9 2.1 定义自定对象Defining custom elements %]a
@A8o0 X$7Oo^1; 2.2 建立线段,并利用此线段制作一个3D的光学积分柱Defining curves that get extruded to create a 3D structure JQKC;p /~3N@J 2.3 建立光源Setting up a volume emitter source b 0LGH.
z4 &v5G92 2.4 修改追迹时光线显示颜色Changing ray color during raytrace v`#j "3{#d9Gs 2.5 建立多个分析面Multiple analysis surfaces @uI? w(76H^e 2.6 光照度及光强度分析Calculating irradiance and intensity distributions Q0zW ]a Jv_.itc 2.7 光线路径分析Ray path calculations _ztZ>' csH2_+uG 3 干涉模拟(Interferometer Example) GXDC@+$14 hpbwZ 本章节课程将会指导使用者如何利用FRED进行同调光源设定及观察光干涉效应。 !dU9sB2 O1GDugZ l The goal of this example is to introduce coherent calculations in FRED ;{<aA 5 r4O|() 3.1 定义棱镜Defining prisms 403[oOj uh]"(h(> 3.2 定义镀膜特性Defining coatings
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^W 3.3 定义组合件Defining subassemblies 3lo;^KX ! si_W:mLF{a 3.4 使用off-the-shelf 对象Using “off-the-shelf” components )v[XmJ>H~o :P3{Nxa 3.5 设定同调光源Setting up a coherent source 2O
eshkE _fcS>/<a 3.6 照度图Calculating irradiance distributions ?b||Cr rRB~=J" 3.7 强度图显示设定Irradiance display options ~9Zh,p; ze`1fO|% 3.8 在三维实体显示窗口贴上照度图Attaching irradiance calculations to 3d rendering view J,f/fPaf7 o^3FL||P#r 3.9 数据汇出到档案Writing data to output file \)ip>{WG ev9;Ld 4 孔径及削切的应用 JnfqXbE 8wr8:(Y$ 本章节将会只由简入深让使用者学会操作,Aperture的功能使用 \ht ?Gn a:85L!~:l l The goal of this example is to demonstrate simple and complex apertures in FRED w/ TKRCO3 )2xE z 4.1 孔径的数值修改Trimming volumes as apertures ,V,f2W 4 ]kx-,M( 4.2 表面利用削切功能变化Trimming surfaces Yc^%zxub I%oRvg|q 4.3 “And”及 “OR”等布尔代数指令建立复合式的孔径“And”ing and “OR”ing operations to make complex apertures S}[l*7 xq}-m!nX 4.4 线段与表面的削切功能的结合应用Trimming (collection) curves "!O1j
r; 2d*_Qq1 4.5 使用线段进行削切去建立三维的光学结构Extruding trimming curve to create 3D structure ]*qU+& *h$&0w
y 5 进阶光学结构设计实例(Custom Elements Example) (S`6Q NmJ`?-Z 本章节将指导大家自定对象的各种进阶功能的使用与操作 ~.J,A\F U&X2cR &a l The goal of this example is to demonstrate the use of custom elements Ga v"C{G w5`#q&? 5.1 将透镜模型的表面修改,成为变化性更高的表现方式 Replacing the surface of a lens with a more complex surface type iv*V#J> owvS/"@ 5.2 将透镜对象形式转化为自定对象形式Converting a lens element into a custom element <47k@Ym }Z\wH*s` 5.3 如何将透镜转化为曼金镜Converting a lens into a Mangin mirror "+)K |9T# OsQkA2= 5.4 定义多层镀膜教学 Defining multilayer d+;gw*_Ei 8'A72*dhX 5.5 理想化表面镀膜及多层镀膜的差异Difference between idealized coating and thin film coating afHaB/t{R (9 sIA*,} 5.6 利用二个方立方体透镜建立分光棱镜实例Using a cube beamsplitter as a generic block of glass ~:4~2d| )P?IqSEA% 5.7 在二个立方体间建立胶合参数教学Gluing two blocks of glass together ?c]n^GvG 5,1{Tv` 5.8 受抑内全反射Frustrated total internal reflection (FTIR) yhpz5[AuO !SO8O 6 准直雷射平台设计(Laser Diode Collimator Example) 4U=75!> 54{q.I@n 本课程将指导如何建立准直雷射平台 qi(*ty SHV4!xP-V l The goal of this example is to demonstrate complex setup techniques 8Hi!kc;f6> 7\ypW $Ot 6.1 由镜头设计软件的档案汇入镜头档案数据Importing lenses from lens design programs a8pY[)^c [ %}u=}@ 6.2 建立一个具有发散角度的雷射光源Using astigmatic laser diode models \=;uu_v$ T-gk <V 6.3 复制组合件Copying subassemblies (&[[46 )55\4<ty 6.4 建立偏极化分光镜Defining a polarization beamsplitter Z
o=]dBp. PE"v*9k 6.5 定义光学石英材质参数Defining an optically active material 9XLFHV(" "0CjP+1k 6.6 建立半波片Constructing a halfwave plate O/Rhf[7v* ujr(K=E 6.7 计算光学场Calculating the optical field tnz+bX26 .&1C:> 7 图片离散取点功能教学(Digitizing) =WG=C1Z c>HK9z{ 本课程的将介绍FRED的各个功能如何应用digitizing 操作及应用 M6rc!K ~6aCfbu%V l The goal of this example is to demonstrate digitizing data plots and drawings in FRED
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)#e 7.1 利用图片离散取点来建立穿透/反射的 coating 参数Digitizing coating transmission/reflection plots +*}{`L-
: [q*%U4qGO 7.2 利用图片离散取点快速建立三维模型Digitizing drawings 5GQLd 6GAaV[])' 7.3 利用图片离散取点快速建立多波长光源Digitizing spectral weighting for a source 52d^K0STC QAPu<rdJP 7.4 利用图片离散取点建立随波长变化对应不同折射率的材质特性参数Digitizing refractive indices .fYZ*=P;c 8X$LC 8 3件组透镜设计案例(Triplet Example) eq[Et
+ amWD-0V 本课程将利用三件式透镜组为主题,为大家介绍FRED如何模拟现实状况下的各种分析方式 .]x2K-Sf -|S]oJy l The goal of this example is to demonstrate various aspects of “real world” analyses LD>\#q8a* ;eL9{eF 8.1 如何由透镜设计软件汇入透镜模块Importing lenses from lens design programs )IL
#>2n? B@y(. 8.2 在FRED中建立多波长光源Setting multiple polychromatic sources &a,OfSz (`BSVxJH 8.3 如何建立序列式描光路径进行近轴分析Using sequential paths in paraxial analyses %JZZ%xc TUIk$U?/I 8.4 同时在多个表面加入材质参数或表面膜层参数Defining multilayer coatings |X19fgk ziE*'p 8.5 鬼影分析计算Performing ghost calculations ^|!I+ 2@=IT0[E\ 8.6 分离鬼影光线做独立光线追迹Isolating specific ghost using ray paths uI~S=;o Iu@y(wyg 8.7 鬼影光照度分析Ghost irradiance analyses 69K{+| qZv
= 8.8 使用序列式描光来减少光线追迹时间Using sequential raytracing to speed up calculation +rXF{@
l !7bw5H 9 扫瞄器范例(Scanner Example) p d[ncL .|qK+Hnc 本课程将利用扫瞄器为主题,为大家介绍FRED如何模拟现实状况下的各种分析方式 <A5]]{9 + e({9] l The goal of this example is to demonstrate various aspects of “real world” analyses H(
jXI i_Re* 9.1 由其它的FRED档案,复制对象来使用Copying from one FRED document to another Z?P~z07 lbdTQ6R 9.2 发光二极管模块的建立Working with an LED model YevyN\,}V! ~[WF_NU1y 9.3 菲涅尔透镜建立流程Creating a Fresnel lens gi/@j )d\j I 9.4 图片离散取点方式快速建立LED灯罩Digitizing drawings/blueprints xo}b=
v j%u-dr 9.5 表面散射参数设定Surface scatter uMb>xxf qBV x6MI 9.6 计算镜头上的感光组件的对数化通量显示Calculating flux levels at CCD $''?HjB}T =J-5.0Q\_\ J7D}% 如需预购,请于以下网站下载订购单: b-U
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