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- W1998870393 abstract "ABSTRACT By introducing scattering probability and statistical distribution functions of substrate subsurface defects radius, refractive indices and positions, extended bidirectional reflectance distribution function (BRDF) was derived on the foundation of Jones scattering matrix. A numerical calculation of the extended BRDF for p-polarization incident light has been performed by employing Monte Carlo method. The calculating results indicate that the extended BRDF depends strongly on incident angle, scattering angle and azimuth angle, and presents a specific symmetry. For real refractive index, the extended BRDF is independent of subsurface defects positions. And the extended BRDF will provide a more precise model for the calculation and measurement of polarized light scattering resulting from subsurface defects. Keywords: Subsurface defect, Polarized light scattering, Bidirectional reflectance distribution function 1. INTRODUCTION In general, subsurface defects in optical substrates, which decrease the laser-induced damage thresholds (LIDTs) of optical components by providing sites fo r light-absorbing impurities to reside, induc ing the atoms at or near the fracture surface to be easily ionized and modulating locally the electromagnetic field, are one of the sources of catastrophic failure for the high power laser systems" @default.
- W1998870393 created "2016-06-24" @default.
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- W1998870393 date "2006-02-13" @default.
- W1998870393 modified "2023-10-18" @default.
- W1998870393 title "Calculation of extended bidirectional reflectance distribution function for subsurface defect scattering" @default.
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- W1998870393 doi "https://doi.org/10.1117/12.678595" @default.
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