Affiliation:
1. Shanxi University
2. Chinese Academy of Sciences
3. Peking University
4. Peking University Yangtze Delta Institute of Optoelectronics
Abstract
Analytical modeling of optical
field propagation in a scattering medium is essential for
computational optics such as iterative imaging reconstructions and
end-to-end photonic designs. Despite the existence of the beam
propagation method framework and numerical electromagnetic simulation
tools for scalar scattering processes, there has been a lack of an
analytical model to include the full tensor nature of birefringent
scattering. Here, we present an analytical tool with a polarization
transfer function tensor to model the field propagation in a
birefringent scattering medium by including a full set of field tensor
elements and multiple-scattering characteristics.
Birefringence-controlled field propagation experiments were
successfully carried out to validate the proposed model. With the
capability to solve the 3D reconstruction of the scattering potential
tensor, we believe the proposed model will provide a more accurate and
efficient forward analytical tool for iterative reconstruction of
birefringence-related scattering processes.
Funder
National Key Research and Development
Program of China
Guangdong Major Project of Basic and
Applied Basic Research
National Natural Science Foundation of
China
China Postdoctoral Science
Foundation
Clinical Medicine Plus X - Young Scholars
Project, Peking University
Fundamental Research Funds for the
Central Universities
High-performance Computing Platform of
Peking University
Subject
Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Cited by
6 articles.
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