1) beam splitter
分束器
1.
The research of beam splitter in quantum key distribution;
量子密钥分发实验中偏振分束器的研究
2.
Error analysis of beam splitter based on positive-negative refraction in photonic crystals;
基于光子晶体正负折射的分束器的误差分析
3.
Design of directional coupling ultracompact multichannel beam splitters
定向耦合型超微多路光分束器的设计
2) Splitter
['splitə]
分束器
1.
Characteristics of beam splitter based on 1×4 photonic crystal waveguide
基于1×4光子晶体波导分束器的特性研究
2.
A mothed tofabri ̄ new Structure of 1 × 4 splitters is proPOsed and experimentally demonstrated.
以线性耦合波方程为基础,分析了具有平面型结构的五光纤耦合系统的功率耦合特性,提出了研制新型结构的单模光纤1×4分束器的方法,并经实验验证。
3.
In this paper, the characteristics of mode fields and optical power coupling among optical fibers of practical 1×3 single-mode optical fiber splitters with a integrative structure of waveguide are derived by using the eigenvalue equation of the symmetric five-layer plannar optical waveguide, and the experimental results are given.
利用五层对称平面介质波导的特征方程,导出了具有波导一体化结构的实际1×3单模光纤分束器的模场特性及其光纤间光耦合特性,并给出了实验结果。
4) beam splitter
光束分束器
1.
Making multi-phase beam splitter-A new binary optical element;
一种新型的二元光学器件——多位相光束分束器的制作
5) beam splitter
光分束器
1.
This paper presents a physical quantum random number generator based on the process of splitting a beam of photons through a 50/50 beam splitter.
设计制作了基于单光子量子随机性的二进制随机数发生器,通过50/50光分束器的光子流被其后的单光子探测器记录下光子路径,经高速电路和计算机数据采集系统转换为二进制随机数流,目前实验中随机数采集速率达100Kbit/s,本文采用延迟符合计数法来克服探测器暗计数的影响。
2.
We report a self-designed binary-optical beam splitter combined with a two dimensional Dammann grating and a Fresnel zone plate which have functions of both beam splitting and focussing.
报道了自行设计的将二维Dammann光栅和Fresnel波带板集成为一体的同时具有分束和聚焦功能的二元位相型光分束器,并用等离子体增强化学汽相淀积法(PECVD)制备的非晶氨化硅(a-SiNx:H)薄膜制作了这样的元件,成功地实现了设计的功能,分束阵列为3×3,焦距18cm,分束后的光强分布相对误差小于5%。
3.
Having both functions of beam splitting and focussing a home designed binaryoptical beam splitter combined with a two-dimensional Dammann grating and a Fresnel zone plate is reported.
报道了自行设计的将二维Dammann光栅和Fresnel波带板集成为一体的同时具有分束和聚焦功能的二元位相型光分束器,并用等离子体增强化学气相淀积法(PECVD)制备的非晶氨化硅(α-SiNx:H)薄膜制作了这样的元件,成功地实现了设计的功能,分束阵列为3×3,焦距为18cm,分束后的光强分布相对误差小于5%。
6) MMI power splitter
MMI分束器
1.
Compared to the traditional design of MMI, interference region of the MMI power splitter takes the shape of reverse taper.
以1×4的对称型MMI分束器为例,当只对干涉区采用倒锥形结构后,在TE偏振中心波长为1 。
2.
Compared with the traditional design of MMI,interference region,input and output waveguides of the MMI power splitter take the shape of reverse taper,then not only the dimension of the splitter and the excess loss is reduced sharply,but also the uniform is en- hanced greatly.
以1×4的对称型MMI分束器为例,在输入输出臂上各增加了倒锥形结构后,较传统设计附加损耗减小了0。
补充资料:电容分压器(见分压器)
电容分压器(见分压器)
capacitor voltage dividers
d)onf。日g无en丫oq{电容分压器(eaPaeitor voltage dividers)见分压器。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条