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用SVGA1薄膜晶体管液晶显示器矫正人眼波像差

The Application of SVAG1 Thin-film Transistor Liquid-crystal Display to Correction of Aberrations in Human Eyes

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【作者】 全薇王肇圻宋贵才凌宁傅汝廉

【Author】 Quan Wei 1,Wang Zhaoqi 1,Song Guicai 2,Ling Ning 3,Fu Rulian 1 1 United Academy of Nankai University and Tianjin University; Institute of Modern Optics,Nankai University,Tianjin 300071 2 Changchun University of Sciences and Technology,Changchun 130022 3 Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209

【机构】 南开大学、天津大学联合研究院南开大学现代光学研究所长春理工大学中国科学院成都光电技术研究所南开大学现代光学研究所 天津300071长春130022天津300071成都610209天津300071

【摘要】 在研究了SVGA1薄膜晶体管液晶显示器(TFTLCD)的位相调制特性的基础上,用它作为眼波像差的矫正器件,在用哈特曼夏克波前传感器的眼像差测量系统中对眼波像差进行了成功的矫正.对于5.2mm的瞳孔,矫正后人眼波像差的PV值降低了3倍多,并接近瑞利判据的像差容限.对系统的光学传递函数(MTF)的分析说明,经波像差矫正后眼的空间分辨率由17c/deg提高到38c/deg.

【Abstract】 SVAG1 thin film transistor liquid crystal display (TFT LCD) is successfully applied to the eyes′ wave aberration measurement system using Hartmann Shack sensor to correct the eye′s aberrations based on the evaluation of the phase modulation properties of the device. By the correction, the peak to valley wave front errors of the eye across 5.2 mm pupil are reduced by a factor of approximate three and close to the Rayleigh quarter wave criterion. It is shown with the modulation transfer function (MTF) analysis that the ultimate spatial resolution of the eye increases from 17 c/deg to 38 c/deg by the correction. The achieved spatial resolution is not only far higher than that before the correction but also higher than the optimum spatial resolution of the normal eyes (approximate 30 c/deg). Therefore the SVAG1 TFT LCD is a promising device in the closed loop adaptive optics system to achieve supernormal vision and high resolution retinal imaging.

【基金】 教育部南开大学、天津大学科技合作基金资助;天津市科技攻关重点项目资助
  • 【文献出处】 光子学报 ,Acta Photonica Sinica , 编辑部邮箱 ,2004年12期
  • 【分类号】R77
  • 【被引频次】20
  • 【下载频次】88
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