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간섭계 무늬 분석×뮬러-스토크스 미적분학×
분야광학광학
계열Process / pipelineProcess / pipeline
기원 연도18011852
창시자Thomas Young and Daniel MalusGeorge Gabriel Stokes and Hans Mueller
유형Pattern analysis algorithmVector-matrix formalism
원전Malacara, D. (Ed.). (2007). Optical Shop Testing (3rd ed.). John Wiley & Sons. link ↗Stokes, G. G. (1852). On the composition and resolution of streams of polarized light from different sources. Transactions of the Cambridge Philosophical Society, 9, 399-416. link ↗
별칭fringe pattern analysis, interferometry, phase extractionMueller matrix method, Stokes parameters, Mueller calculus
관련33
요약Interferogram fringe analysis is a computational methodology for extracting quantitative information from interference fringe patterns recorded in optical systems. Rooted in Thomas Young's 1801 double-slit experiment and formalized in 20th-century metrology, this approach interprets the spatial patterns of constructive and destructive interference to measure surface topography, optical aberrations, refractive-index distributions, and other optical properties with high precision.Mueller-Stokes calculus is a mathematical framework for describing and analyzing the polarization properties of light, including partially polarized and unpolarized light. Grounded in George Gabriel Stokes' 1852 work on polarization parameters and extended by Hans Mueller in 1948, this formalism uses the four-component Stokes vector and the 4×4 Mueller matrix to track how optical systems transform polarization states.
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ScholarGate방법 비교: Interferogram Fringe Analysis · Mueller-Stokes Calculus. 2026-06-18에 다음에서 검색함: https://scholargate.app/ko/compare