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Zwitterion-doped liquid crystal speckle reducers for immersive displays and vectorial imaging.


ABSTRACT: Lasers possess many attractive features (e.g., high brightness, narrow linewidth, well-defined polarization) that make them the ideal illumination source for many different scientific and technological endeavors relating to imaging and the display of high-resolution information. However, their high-level of coherence can result in the formation of noise, referred to as speckle, that can corrupt and degrade images. Here, we demonstrate a new electro-optic technology for combatting laser speckle using a chiral nematic liquid crystal (LC) dispersed with zwitterionic dopants. Results are presented that demonstrate when driven at the optimum electric field conditions, the speckle noise can be reduced by >90% resulting in speckle contrast (C) values of C = 0.07, which is approaching that required to be imperceptible to the human eye. This LC technology is then showcased in an array of different display and imaging applications, including a demonstration of speckle reduction in modern vectorial laser-based imaging.

SUBMITTER: Jin Y 

PROVIDER: S-EPMC10514055 | biostudies-literature | 2023 Sep

REPOSITORIES: biostudies-literature

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Zwitterion-doped liquid crystal speckle reducers for immersive displays and vectorial imaging.

Jin Yihan Y   Spiller Nathan P NP   He Chao C   Faulkner Grahame G   Booth Martin J MJ   Elston Steve J SJ   Morris Stephen M SM  

Light, science & applications 20230922 1


Lasers possess many attractive features (e.g., high brightness, narrow linewidth, well-defined polarization) that make them the ideal illumination source for many different scientific and technological endeavors relating to imaging and the display of high-resolution information. However, their high-level of coherence can result in the formation of noise, referred to as speckle, that can corrupt and degrade images. Here, we demonstrate a new electro-optic technology for combatting laser speckle u  ...[more]

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