Poster + Presentation
5 March 2021 All photon analysis of ultrasonically sculpted virtual optical waveguides using a custom-designed physics-based renderer
Matteo Giuseppe Scopelliti, Adithya Kumar Pediredla, Hengji Huang, Yasin Karimi, Srinivasa G. Narasimhan, Ioannis Gkioulekas, Maysamreza Chamanzar
Author Affiliations +
Conference Poster
Abstract
We discuss the characterization and analysis of ultrasonically sculpted virtual optical waveguides in scattering media using a novel physics-based renderer. Our renderer is physically accurate, unbiased, and fast. Unlike other simulators, our renderer can handle heterogeneous refractive index profiles in scattering media. Using the renderer, we characterized the effect of different parameters of virtual optical waveguides to enhance the overall light throughput in transparent and scattering media. The simulator can potentially be used for analysis-by-synthesis and design of innovative acousto-optics systems, capable of generating complex virtual elements in scattering media.
Conference Presentation
© (2021) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Matteo Giuseppe Scopelliti, Adithya Kumar Pediredla, Hengji Huang, Yasin Karimi, Srinivasa G. Narasimhan, Ioannis Gkioulekas, and Maysamreza Chamanzar "All photon analysis of ultrasonically sculpted virtual optical waveguides using a custom-designed physics-based renderer", Proc. SPIE 11642, Photons Plus Ultrasound: Imaging and Sensing 2021, 1164243 (5 March 2021); https://doi.org/10.1117/12.2578844
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KEYWORDS
Waveguides

Scattering media

Monte Carlo methods

Refractive index

Biological research

Ultrasonography

Scattering

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