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Motion de-blurring by second-order intensity-correlated imaging 被引量:3

Motion de-blurring by second-order intensity-correlated imaging
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摘要 For a Hanbury Brown and Twiss system, the influence of relative motion between the object and the detection plane on the resolution of second-order intensity-correlated imaging is investigated. The analytical results, which are backed up by experiments, demonstrate that the amplitude and mode of the object's motion have no effect on the second-order intensity-correlated imaging and that high-resolution imaging can be always achieved by using a phase-retrieval method from the diffraction patterns. The use of motion de-blurring imaging for this approach is also discussed. For a Hanbury Brown and Twiss system, the influence of relative motion between the object and the detection plane on the resolution of second-order intensity-correlated imaging is investigated. The analytical results, which are backed up by experiments, demonstrate that the amplitude and mode of the object's motion have no effect on the second-order intensity-correlated imaging and that high-resolution imaging can be always achieved by using a phase-retrieval method from the diffraction patterns. The use of motion de-blurring imaging for this approach is also discussed.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2016年第7期10-13,共4页 中国光学快报(英文版)
基金 supported by the National 863 Program of China(No.2013AA122901) the National Natural Science Foundation of China(No.61571427) the Youth Innovation Promotion Association CAS(No.2013162)
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