物理学报
物理學報
물이학보
2013年
5期
221-229
,共9页
王华英%刘飞飞%廖薇%宋修法%于梦杰%刘佐强
王華英%劉飛飛%廖薇%宋脩法%于夢傑%劉佐彊
왕화영%류비비%료미%송수법%우몽걸%류좌강
显微数字全息%预放大数字全息%像面数字全息%分辨率
顯微數字全息%預放大數字全息%像麵數字全息%分辨率
현미수자전식%예방대수자전식%상면수자전식%분변솔
digital micro-holographic microscopy%pre-magnification digital holography%image-plane digital holog-raphy%resolution
基于预放大数字全息显微系统的全息图记录与再现过程及其点扩散函数的分析,从成像分辨率、成像质量及实现的难易程度等方面对数字全息显微中六种常见记录光路系统的成像性能进行了对比研究.结果表明,像面数字全息术具有最高的成像分辨率及成像质量,其成像分辨率与记录器件的光敏面尺寸无关,该系统对信息的记录是完整的,而且记录过程不必考虑物体被照亮区域的大小,再现过程非常简单,是优化的数字全息显微成像系统.等波面弯曲的物参光像面数字全息术非常有利于位相解包裹及位相畸变补偿的正确进行,该系统更适合于位相显微.实验结果验证了理论分析的正确性.
基于預放大數字全息顯微繫統的全息圖記錄與再現過程及其點擴散函數的分析,從成像分辨率、成像質量及實現的難易程度等方麵對數字全息顯微中六種常見記錄光路繫統的成像性能進行瞭對比研究.結果錶明,像麵數字全息術具有最高的成像分辨率及成像質量,其成像分辨率與記錄器件的光敏麵呎吋無關,該繫統對信息的記錄是完整的,而且記錄過程不必攷慮物體被照亮區域的大小,再現過程非常簡單,是優化的數字全息顯微成像繫統.等波麵彎麯的物參光像麵數字全息術非常有利于位相解包裹及位相畸變補償的正確進行,該繫統更適閤于位相顯微.實驗結果驗證瞭理論分析的正確性.
기우예방대수자전식현미계통적전식도기록여재현과정급기점확산함수적분석,종성상분변솔、성상질량급실현적난역정도등방면대수자전식현미중륙충상견기록광로계통적성상성능진행료대비연구.결과표명,상면수자전식술구유최고적성상분변솔급성상질량,기성상분변솔여기록기건적광민면척촌무관,해계통대신식적기록시완정적,이차기록과정불필고필물체피조량구역적대소,재현과정비상간단,시우화적수자전식현미성상계통.등파면만곡적물삼광상면수자전식술비상유리우위상해포과급위상기변보상적정학진행,해계통경괄합우위상현미.실험결과험증료이론분석적정학성.
Based on the analysis of the recording and reconstructing of hologram and the point spread function of pre-magnification digital micro-holographic system (PMDMHS), the performances of the six common PMDMHSs are compared in imaging resolution, imaging quality and conveniences, for the first time to our knowledge. The results show that the digital image-plane holography (DIPH) has the highest imaging resolution and the best imaging quality;the resolution of DIPH is independent of the photosensitive surface size of the recording device;this system can completely record the information about the object transmitted through the micro-objective (MO);it is not needed to consider the size of illuminated region of object. Moreover, the reconstruction process of DIPH is very simple. DIPH is an optimized digital holographic imaging system. The DIPH with equal curvature of reference wavefront and object wavefront is very conducive to phase unwrapping and phase aberration compensation;therefore DIPH is more suitable for phase microscopy. The experimental results demonstrate the validation of the theoretical analysis.