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February 2, 2026Photonics0 citationsOpen Access

Speckle Suppression in Micro-Projection Systems Using a Vibrating Particle Scattering Surface

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YZYiran ZhaoXZXinyan ZhengSZShun Zhou

Key Points

  • This research aims to develop a simple speckle suppression structure to improve image clarity in laser projection systems.
  • Proposed a speckle suppression structure featuring a low-absorption particle surface and micro-vibrating unit.
  • Developed a time-varying functional model for optimizing dynamic operation through simulations.
  • Conducted experimental validation at varying vibration frequencies.
  • At 50 Hz vibration, speckle contrast decreased from 30.23% to 6.98%.
  • Simulation predictions matched closely at 7.12% speckle contrast.
  • Outperformed static configurations in speckle contrast reduction by 24%.

Abstract

Laser beams are excellent projection sources due to their high brightness and color purity; however, their high coherence produces speckle noise, which reduces the clarity of images cast by compact projection systems. Existing suppression methods often require complex designs. Here, we propose a simple miniaturized speckle suppression structure (SSS) that consists of a low-absorption particle surface and a micro-vibrating unit. By generating and superimposing different speckle patterns over time, the structure simultaneously reduces both temporal and spatial coherence. A time-varying functional model was developed using a simulation to optimize its dynamic operation. The results of the experimental validation show that at 50 Hz vibration, the speckle contrast decreases from 30.23% to 6.98%, closely matching the simulated prediction of 7.12% and outperforming static configurations by 24%. The results indicate that the SSS is a straightforward, effective solution for enhancing the image quality of compact laser projection displays.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/6980ff37c1c9540dea811fafhttps://doi.org/10.3390/photonics13020134
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