Incoherent triangular digital holographic color three-dimensional imaging system and method

A digital holography and three-dimensional imaging technology, which is applied in the direction of instruments, can solve the problems of real-time or quasi-real-time three-dimensional display of difficult dynamic samples, slow recording process and reproduction speed, and difficult precise registration of monochrome reproduced images, so as to overcome the problems of recording and The effect of slow reproduction speed, simple reproduction method, and fast recording speed

CN103728866BActive Publication Date: 2017-11-14BEIJING UNIV OF TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Publication Date
2017-11-14

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Abstract

The invention relates to an incoherent triangular digital holography colorful three-dimensional imaging system and method. The incoherent triangular digital holography colorful three-dimensional imaging system comprises a white light source, a first lens, a second lens, a third lens, a fourth lens, a fifth lens, a sixth lens, a first interference filter, a second interference filter, a third interference filter, a first polarizing film, a second polarizing film, a polarization splitting prism, a first reflector, a second reflector, an image collection device and a computer. The incoherent triangular digital holography colorful three-dimensional imaging system is characterized in that a Fourier transform lens is added based on a traditional triangular interferometer, the normal direction of the first reflector deviates off the optical axis of the system, and incoherent off-axis Fourier transform hologram record is achieved. By means of the method, red, green and blue quasi monochromatic light generated by performing narrow-band filtering on the white light source through the three interference filters serves as the lighting source, and three holograms are generated and recorded; the three holograms are reproduced in the computer, and registration is performed on the reproductive images; the reproductive images of three-color channels are fused to form a true color image. By means of the incoherent triangular digital holography colorful three-dimensional imaging system and method, colorful holographic reproductive images of incoherent objects can be obtained quickly, and three-dimensional colorful imaging of the incoherent objects can be achieved.
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Description

Technical field

[0001] The invention belongs to the technical field of digital holography and three-dimensional imaging, and relates to a system and method for realizing incoherent color three-dimensional imaging based on incoherent digital holography technology. Background technique

[0002] Holography has the characteristics of three-dimensional imaging of objects and has received extensive attention since its invention. However, the dependence on coherent light sources largely limits the specific application of traditional holography in many fields. The emergence of incoherent holography makes holography get rid of the dependence on coherent light sources, and expands its application fields to astronomical observation, biological fluorescence and other incoherent optical imaging fields. Using the point-derived coherence characteristics of the incoherent light source, the light waves emitted by the object are split by different methods, and the three-dimensional information of...

Examples

Embodiment Construction

[0033] The present invention will be further described below with reference to the drawings and specific embodiments.

[0034] The system light path diagram of the imaging system of the present invention is as follows figure 1 Shown, including: white light source 1, first, second, third, fourth, fifth and sixth lenses 2, 6, 8, 11, 14 and 16, first, second and third interference filters 3, 4, and 5, first and second polarizers 9 and 15, polarization beam splitting prism 10, first and second mirrors 12 and 13, image acquisition device 17, computer 18.

[0035] The light emitted by the white light source 1 is condensed by the first lens 2 to become collimated parallel light, and after passing through the first interference filter 3, it becomes quasi-monochromatic light. After being condensed by the second lens 6, the incoherent object 7 is illuminated. After the reflected light of the incoherent object is condensed by the third lens 8, it becomes linearly polarized light by the first ...