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A review of common-path off-axis digital holography:towards high stable optical instrument manufacturing 被引量:9

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摘要 Digital holography possesses the advantages of wide-field,non-contact,precise,and dynamic measurements for the complex amplitude of object waves.Today,digital holography and its derivatives have been widely applied in interferometric measurements,three-dimensional imaging,and quantitative phase imaging,demonstrating significant potential in the material science,industry,and biomedical fields,among others.However,in conventional off-axis holographic experimental setups,the object and reference beams propagate in separated paths,resulting in low temporal stability and measurement sensitivity.By designing common-path configurations where the two interference beams share the same or similar paths,environmental disturbance to the two beams can be effectively compensated.Therefore,the temporal stability of the experimental setups for hologram recording can be significantly improved for time-lapsing measurements.In this review,we categorise the common-path models as lateral shearing,point diffraction,and other types based on the different approaches to generate the reference beam.Benefiting from compact features,common-path digital holography is extremely promising for the manufacture of highly stable optical measurement and imaging instruments in the future.
出处 《Light(Advanced Manufacturing)》 2021年第3期97-113,共17页 光(先进制造)(英文)
基金 Support from the National Natural Science Foundation of China(NSFC)(61927810,62075183,62005219) Fundamental Research Funds for the Central Universities(310202011qd004)is acknowledged.
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