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Miellers-Stoukss aprēķins×Džounsa kalkuluss×
NozareOptikaOptika
SaimeProcess / pipelineProcess / pipeline
Izcelsmes gads18521941
AutorsGeorge Gabriel Stokes and Hans MuellerRobert Clark Jones
TipsVector-matrix formalismVector-matrix formalism
PirmavotsStokes, 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 ↗Jones, R. C. (1941). A new calculus for the treatment of optical systems: I. Description and discussion of the calculus. Journal of the Optical Society of America, 31(7), 488-493. DOI ↗
Citi nosaukumiMueller matrix method, Stokes parameters, Mueller calculusJones vector method, Jones matrix, polarization calculus
Saistītās33
KopsavilkumsMueller-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.Jones calculus is a mathematical formalism for analyzing the propagation and manipulation of polarized light using vectors and matrices. Developed by Robert Clark Jones in 1941, it represents the electric field of a coherent optical beam as a two-component complex vector (Jones vector) and optical elements as matrices (Jones matrices), enabling elegant tracking of polarization through optical systems.
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ScholarGateSalīdzināt metodes: Mueller-Stokes Calculus · Jones Calculus. Izgūts 2026-06-18 no https://scholargate.app/lv/compare