2003Optics LettersRequires access

Correlation-induced changes in the degree of polarization, the degree of coherence, and the spectrum of random electromagnetic beams on propagation

Emil Wolf

Open publisher page 193 citations

Abstract

A method is described, based on a recently formulated unified theory of coherence and polarization, for determining the changes that the degree of polarization, the degree of coherence, and the spectrum of a random electromagnetic beam may undergo as the beam propagates. Propagation in free space as well as in linear media, both deterministic and random, is discussed.

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What this paper is about

A method is described, based on a recently formulated unified theory of coherence and polarization, for determining the changes that the degree of polarization, the degree of coherence, and the spectrum of a random electromagnetic beam may undergo as the beam propagates. Propagation in free space as well as in linear media, both deterministic and random, is discussed.

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OpenAlex reports 193 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A method is described, based on a recently formulated unified theory of coherence and polarization, for determining the changes that the degree of polarization, the degree of coherence, and the spectrum of a random electromagnetic beam may undergo as the beam propagates. Propagation in free space as well as in linear media, both deterministic and random, is discussed.

Key concepts: Degree of polarization, Degree of coherence, Coherence (philosophical gambling strategy), Polarization (electrochemistry), Physics, Optics, Coherence theory, Coherence length

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