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CAS IR Grid
机构
长春光学精密机械与物... [5]
化学研究所 [1]
上海药物研究所 [1]
海洋研究所 [1]
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OAI收割 [8]
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期刊论文 [5]
会议论文 [2]
学位论文 [1]
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2024 [1]
2023 [1]
2018 [1]
2014 [1]
2013 [1]
2012 [1]
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ASAP-MS combined with mass spectrum similarity and binary code for rapid and intelligent authentication of 78 edible flowers
期刊论文
OAI收割
FOOD CHEMISTRY, 2024, 卷号: 436, 页码: 10
作者:
Meng, Qian
;
Zhang, Jianqing
;
Li, Xiaolan
;
Li, Yun
;
Shen, Xuanjing
  |  
收藏
  |  
浏览/下载:25/0
  |  
提交时间:2023/12/19
ASAP
Flowers
MATLAB
Authentication
Description of a new species of Polycera Cuvier, 1816 (Gastropoda: Nudibranchia: Polyceridae) from the East China Sea
期刊论文
OAI收割
NAUTILUS, 2023, 卷号: 137, 期号: 3-4, 页码: 41
作者:
Zhang, Shuqian
;
Zhang, Suping
  |  
收藏
  |  
浏览/下载:4/0
  |  
提交时间:2024/12/20
Heterobranchia
, Polyceroidea
Polyceri-dae
ASAP
sea slug
Two-dimensional correlation spectroscopic studies on coordination between organic ligands and Ni2+ ions
期刊论文
OAI收割
SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 2018, 卷号: 197, 页码: 126-132
作者:
Bao, Ya-nan
;
Zeng, Yi-wei
;
Guo, Ran
;
Ablikim, Mesude
;
Shi, Hai-fang
  |  
收藏
  |  
浏览/下载:50/0
  |  
提交时间:2019/04/09
Ni2++
Coordination
2dcos
Daosd
Asap
平面光栅杂散光测试仪模型设计及消杂光技术研究
期刊论文
OAI收割
光谱学与光谱分析, 2014, 期号: 4, 页码: 1124-1129
翟珊珊
;
杨晋
;
巴音贺希格
;
崔继承
;
齐向东
;
唐玉国
收藏
  |  
浏览/下载:25/0
  |  
提交时间:2015/04/17
杂散光
平面光栅
ASAP软件
仪器杂光
杂散光测试仪
杂光抑制
衍射光栅杂散光测试仪模型设计及性能评价方法研究
学位论文
OAI收割
硕士: 中国科学院大学, 2013
翟珊珊
收藏
  |  
浏览/下载:18/0
  |  
提交时间:2014/03/15
光栅杂散光
杂散光测试仪
ASAP软件
仪器杂光
杂光抑制
衍射复眼望远镜系统光学特性分析
期刊论文
OAI收割
长春理工大学学报(自然科学版), 2012, 期号: 02, 页码: 40-44
作者:
文大化
收藏
  |  
浏览/下载:20/0
  |  
提交时间:2013/03/11
衍射物镜
衍射效率
杂散光
ASAP
Imaging analysis of a novel compound diffractive telescope system (EI CONFERENCE)
会议论文
OAI收割
Optical Manufacturing and Testing VIII, August 4, 2009 - August 5, 2009, San Diego, CA, United states
作者:
Liu H.
;
Liu Y.
;
Liu Y.
;
Liu Y.
;
Zhang H.
收藏
  |  
浏览/下载:33/0
  |  
提交时间:2013/03/25
The main feature of the compound diffractive telescope is the combination of diffractive optics with compound structure arranged eyepieces. In this paper
a design of the compound diffractive telescope is firstly introduced
and a 4.2 FOV is obtained with one primary lens and twenty-one eyepieces. Secondly
image characteristic of different channels is analyzed with the design wavelength in ASAP
and one modified phase function model of diffractive optical element is introduced to analyze the MTF curves for 0 FOV
which provides a more accurate prediction of the performance of the system. Then the system is tested by the star image test
and the diffraction limit images are got within 2 FOV. And finally
two pictures taken from the adjacent FOV proved to be able to be spliced together. All the results above demonstrate that a good performance of the compound diffractive telescope. 2009 SPIE.
Narcissus analysis for cooled staring IR system (EI CONFERENCE)
会议论文
OAI收割
3rd International Symposium on Advanced Optical Manufacturing and Testing Technologies, AOMATT 2007: Advanced Optical Manufacturing Technologies, July 8, 2007 - July 12, 2007, Chengdu, China
作者:
Zhang X.
;
Zhang X.
;
Zhang X.
收藏
  |  
浏览/下载:25/0
  |  
提交时间:2013/03/25
Narcissus can have a deleterious effect on image quality for cooled infrared imaging systems. Therefore
analysis of narcissus is important for designing both scanning and staring optics. Narcissus is generally assumed to be negligible in staring IR optical designs because the shading effects can be removed by calibration of the detector array data. However
the calibration usually decreases sensitiveness of the system and Narcissus variation may be noticeable for sensors when the conditions changes as follows: 1. warming and cooling the optical housing
2. zooming optical elements
3. movement of lenses for focus. In that case
it will result in shading and other image defects even after calibration. To minimize these effects
narcissus should be assessed and controlled during the design of staring array IR system. We provided a direct and fast method for analyzing the narcissus variation in the presence of software such as LightTools
TracePro and ASAP
and proposed the principles in optical design of staring IR systems to reduce narcissus. A cooled staring IR system with serious narcissus was estimated and reoptimized. Narcissus analysis of this IR system confirmed the efficiency of the analysis method.