帮助 关于我们

返回检索结果

宽带六平台相位板星冕仪的误差分析
Error Analysis of the Wide-Band Six-Level Phase Mask Stellar Coronagraph

查看参考文献18篇

胡荣飞 1   曹清 1   葛亚骏 1   王凯 1   魏劲松 2  
文摘 相位板的加工精度直接影响着相位型星冕仪成像系统的性能。推导了六平台相位板的误差公式,并分析了相位板结构的微小变化对六平台相位板星冕仪的消光性能和消色差性能的影响。数值模拟结果表明,对特定波长的单色光,相位板相位水平高度的误差和倾斜角的误差都会降低六平台相位板星冕仪的消光性能。但是相比较而言,消光能力对相位阶跃处的倾斜角的误差更为敏感。在宽带范围内,考虑消色差性能,相位水平高度误差只会使其中心波长发生偏移;而相位阶跃处倾斜角的微小误差则会极大地降低其消色差性能。
其他语种文摘 The machining precisions of phase mask directly affect the performance of a stellar coronagraph imaging system. The error formula of six-level phase mask is derived. The influences on the extinction and the achromatic performance are analyzed when small errors of phase mask are induced. The numerical simulation results show that the errors of phase horizontal hight of phase mask and tilt angle variation can reduce the extinction performance for the monochromic light of specific wavelength. However,in comparison,the coronagraph extinction performance is more sensitive to the tilt angle errors. With in the scope of the broadband,considering the achromatism ability,the level height error can only affect its central wavelength,while the small errors of tilt angle can greatly degrade its achromatic performance.
来源 激光与光电子学进展 ,2016,53(7):071102-1-071102-6 【核心库】
DOI 10.3788/LOP53.071102
关键词 成像系统 ; 相位板 ; 星冕仪 ; 误差分析 ; 消色差
地址

1. 上海大学理学院物理系, 上海, 200444  

2. 中国科学院上海光学精密机械研究所高密度光存储技术实验室, 上海, 201800

语种 中文
文献类型 研究性论文
ISSN 1006-4125
学科 物理学;天文学
文献收藏号 CSCD:5766476

参考文献 共 18 共1页

1.  Guyon O. Theoretical limits on extrasolar terrestrial planet detection with coronagraphs. The Astrophys Journal Supplement Steries,2006,167(1):81-99 被引 8    
2.  Baudoz P. Achromatic interfero coronagraphy I. The oretical capabilities for ground-based observations. Astronomy Astrophysics Supplement Steries,2000,141(2):319-329 被引 1    
3.  Yang W. One-sided achromatic phase apodization for imaging of extrasolar planets. Astrophys J,2004,605(2):892-901 被引 1    
4.  Ren D. A coronagraph based on steep-transmission filters. Publications of the Astronomical Society Pacific,2007,119(859):1063-1068 被引 6    
5.  Ren D. A transmission-filter coronagraph: Design and test. Publications of the Astronomical Society Pacific,2010,122(891):590-594 被引 6    
6.  Liu C. A high-contrast coronagraph for direct imaging of earth-like exoplanets: Design and test. Research in Astronomy and Astrophysics,2015,15(3):453-460 被引 1    
7.  Foo G. Optical vortex coronagraph. Opt Lett,2005,30(24):3308-3310 被引 20    
8.  Rouan D. The four-quadrant phase-mask coronagraph. I. Principle. Publications of the Astronomical Society Pacific,2000,112(777):1479-1486 被引 3    
9.  Mawet D. Optical vectorial vortex coronagraphs using liquid crystal polymers: Theory, manufacturing and laboratory demonstration. Opt Express,2009,17(3):1902-1918 被引 3    
10.  Swartzlander G A. Astronomical demonstration of an optical vortex coronagraph. Opt Express,2008,16(14):10200-10207 被引 10    
11.  Boccaletti A. The four-quadrant phase mask coronagraph. IV. First light at the very large telescope. Publications of the Astronomical Society Pacific,2004,116(825):1061-1071 被引 2    
12.  Serabyn E. An image of an exoplanet separated by two diffraction beamwidths from a star. Nature,2010,464(7291):1018-1020 被引 10    
13.  Rouan D. The four quadrant phase mask coronagraph and its avatars. C R Physique,2007,8(3/4):298-311 被引 1    
14.  Ma O. Wide-band coronagraph with sinusoidal phase in the angular direction. Opt Express,2012,20(10):10933-10943 被引 3    
15.  Hou F. Wide-band six-region phase mask coronagraph. Opt Express,2014,22(2):1884-1895 被引 3    
16.  Cao Z. Trapezoidal phase mask coronagraph. Chin Opt Lett,2015,13(2):021101 被引 1    
17.  施建珍. 用波晶片产生可调矩形空心光束. 光学学报,2015,35(9):0926001 被引 4    
18.  陈国钧. π相位板产生矢量光束的高数值孔径聚焦特性研究. 光学学报,2014,34(12):1226001 被引 8    
引证文献 1

1 童谢刚 平顶正弦相位板星冕仪 激光与光电子学进展,2017,54(5):051102-1-051102-6
被引 0 次

显示所有1篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号