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1. 浙江工业大学 理学院,浙江 杭州,310023
2. 浙江工业大学 义乌科学技术研究院, 浙江 义乌,322001
3. 乌克兰国家科学院 信息记录研究所 基辅,乌克兰,03113
[ "付明磊(1981-),男,天津蓟县人,博士,副教授,硕士生导师,2004年,2007年,2010年于浙江工业大学分别获得学士、硕士、博士学位,主要从事微结构光学器件及其信息处理技术方面的研究。E-mail:fuml@zjut.edu.cn" ]
[ "张湘南(1991-),男,湖南新邵人,硕士研究生,2014年于湖南文理学院获得学士学位,主要从事光学设计方面的研究。E-mail:zxn@zjut.edu.cn" ]
[ "乐孜纯(1965-),女,浙江杭州人,博士,教授,博士生导师,1987年于浙江大学获得学士学位,1997年于中国科学院长春光机所获得博士学位,主要从事微结构光学器件及其信息处理技术方面的研究。E-mail:lzc@zjut.edu.cn" ]
[ "维亚切斯拉夫·" ]
[ "彼得罗夫(1940-),男,乌克兰基辅人,博士,教授,乌克兰国家科学院院士,1962年于哈尔科夫理工学院获得学士学位,1967年于苏联乌克兰科学院控制研究所获得博士学位,主要从事光学信息记录、光电子材料、超材料领域的研究。E-mail:petrov@ipri.kiev.ua" ]
收稿日期:2015-05-28,
修回日期:2015-06-22,
纸质出版日期:2015-11-14
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付明磊, 张湘南, 乐孜纯等. 微结构压贴三棱镜色散的补偿[J]. 光学精密工程, 2015,23(10z): 99-105
FU Ming-lei, ZHANG Xiang-nan, LE Zi-chun etc. Compensation of chromatic aberrations for microstructure press-on prisms[J]. Editorial Office of Optics and Precision Engineering, 2015,23(10z): 99-105
付明磊, 张湘南, 乐孜纯等. 微结构压贴三棱镜色散的补偿[J]. 光学精密工程, 2015,23(10z): 99-105 DOI: 10.3788/OPE.20152313.0098.
FU Ming-lei, ZHANG Xiang-nan, LE Zi-chun etc. Compensation of chromatic aberrations for microstructure press-on prisms[J]. Editorial Office of Optics and Precision Engineering, 2015,23(10z): 99-105 DOI: 10.3788/OPE.20152313.0098.
针对儿童斜视辅助治疗中使用的高度数压贴三棱镜在色散补偿能力方面的不足
提出一种采用衍射棱镜阵列对压贴三棱镜的折射棱镜阵列进行色散补偿的方法。介绍了衍射棱镜阵列和折射棱镜阵列组成的压贴三棱镜器件的结构及其色散补偿原理
对上述压贴三棱镜器件进行了仿真
并分析了它的色散补偿效果。理论分析表明:折射棱镜阵列单元宽度的最佳取值为600~800 μm;衍射棱镜阵列单元宽度的最佳取值为15~20 μm。软件仿真结果表明:由聚甲基丙烯酸甲酯(PMMA)制成的压贴三棱镜的光线透过率为95%
点列图中83%的点分布在Airy斑环内部。实验显示所提出的色散补偿方法可解决高度数压贴三棱镜的色散问题
具有较好的实用性。
As high astigmatism press-on prisms have weak ability to compensate chromatic aberrations in the adjuvant therapies of children strabismus
a method to compensate the chromatic aberrations of press-on prisms was proposed by using a diffraction prism array. The pres-on prism device was composed of a refraction prism array and a diffraction prism array. Both the device structure and the principle of chromatic aberration compensation were discussed
Then
the device was simulated and its aberration compensation ability was analyzed. Theoretical analysis shows that the optimal range of element width of the refraction prism array is 600-800 μm
while the optimal range of element width of diffraction prism array is 15-20 μm. Software simulation results show that the light transmittance of the press-on prisms made of polymethylmethacrylates(PMMA) is 95%
83% of the spots in the diagram locates inside the Airy spot rings. It concludes that the proposed method is well practical and suitable for compensating the chromatic aberrations in high astigmatism press-on prisms.
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