研究目的
Investigating the method of speckle reduction suitable for use in a laser projector by combining wavelength diversity and angular diversity methods.
研究成果
The proposed method achieved a SCR below the human-eye perception limit (5%) by employing two-dimensional vibrating lenses coupled with wavelength diversity techniques. This method is compact and does not require modifications to the optical path, making it ideal for mini-/pico-projection systems.
研究不足
The study did not use optical diffusers to avoid optical losses, which could further reduce the SCR. The optical efficiency could be improved with the optimization of optical coatings on the lenses.
1:Experimental Design and Method Selection:
The experiment combined wavelength diversity and angular diversity methods for speckle reduction. Wavelength diversity was achieved using two green laser sources at a power ratio of 4:1. Angular diversity was achieved via the vibration of two lenses in two orthogonal directions.
2:Angular diversity was achieved via the vibration of two lenses in two orthogonal directions. Sample Selection and Data Sources:
2. Sample Selection and Data Sources: The laser sources used were a 520 nm laser diode (LD) and a 532 nm diode-pumped solid-state (DPSS) laser.
3:List of Experimental Equipment and Materials:
The setup included two vibrating lenses (LVM1 and LVM2), a cubic beam-splitter, a power meter, micro-lens arrays, and a projection lens.
4:Experimental Procedures and Operational Workflow:
The combined green laser beam was directed through two vibrating lenses, followed by a pair of micro-lens arrays to homogenize the light field. The output image was projected onto a screen.
5:Data Analysis Methods:
The speckle contrast ratio (SCR) was measured to evaluate the effectiveness of speckle reduction.
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laser diode
NDG7475
Nichia
Used as one of the green laser sources for wavelength diversity in speckle reduction.
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power meter
LM10
coherent Inc.
Used to measure the power ratio between the two green laser sources.
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