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Book ChapterDOI

The structure of partially coherent fields

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TLDR
In this article, the authors provide an overview of recent advances, both theoretical and experimental, that have been made in a number of areas of optical coherence, including the introduction of the space-frequency representation of partially coherent fields, and an increased emphasis on the spatial coherence properties of wave fields.
Abstract
Publisher Summary The general framework of optical coherence theory is now well established and has been described in numerous publications. This chapter provides an overview of recent advances, both theoretical and experimental, that have been made in a number of areas of classical optical coherence. These advances have been spurred on by the introduction of the space-frequency representation of partially coherent fields, and an increased emphasis on the spatial coherence properties of wave fields. The fundamental experiment to measure spatial coherence is Young's double-slit experiment. A number of important optical processes are influenced by the coherence properties of the wave field. Results relating to the propagation of partially coherent wavefields highlight some of the significant results relating to optical beams. The influence of coherence on focusing is summarized and reviewed, along with the scattering of partially coherent wave fields and its relation to inverse scattering problems is discussed. It has been shown that spatial correlation functions have interesting topological properties associated with their phase singularities; these properties and the relevant literature are discussed. The coherent mode representation and its applications are described and several techniques for the numerical simulation of wave fields with a prescribed statistical behavior are explained.

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Citations
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Journal ArticleDOI

Scintillation of nonuniformly polarized beams in atmospheric turbulence.

TL;DR: It is demonstrated, through numerical simulations, that an appropriately chosen nonuniformly polarized coherent optical field can have appreciably smaller scintillation than comparable beams of uniform polarization.
Journal ArticleDOI

Experimentally generating any desired partially coherent Schell-model source using phase-only control

TL;DR: In this article, a phase-only liquid-crystal spatial light modulator (SLM) was proposed to control both the phase and amplitude using a single SLM, thereby making the amplitude filters unnecessary.
Journal Article

The concept of degree of coherence and its application to optical problems

F. Zernike
TL;DR: In this article, the maximum visibility of the interferences obtainable from two points in a wave field is defined as their degree of coherence γ, which depends only on the aperture of the illuminating cone.
Journal ArticleDOI

Partially coherent sources with circular coherence.

TL;DR: A new class of partially coherent light sources is introduced that exhibit perfect coherence along any annulus that is concentric to the source center.
References
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Proceedings ArticleDOI

Phase and coherence singularities generated by the interference of partially coherent fields

TL;DR: In this article, phase singularities of both the wavefield and correlation function, generated by partially coherent fields emerging from pinholes in an opaque screen, were numerically investigated and a new type of mixed field/correlation singularity was found to occur.
Proceedings ArticleDOI

Coherence and Polarization Properties of Far-Fields Generated by Quasi-Homogeneous Electromagnetic Sources

TL;DR: In this paper, the concept of a scalar quasi-homogeneous source is generalized to electromagnetic theory; coherence and polarization properties of the far field generated by such a source are discussed.
Journal ArticleDOI

Focusing of partially coherent light into planar waveguides.

TL;DR: Edge coupling of a focused partially coherent Gaussian Schell-model beam into a planar dielectric waveguide is examined and the results are compared with the predictions of the overlap integral method.
Journal ArticleDOI

Intensity and polarization changes of partially coherent and partially polarized light in Young's experiment

Linzhi Wang, +1 more
- 01 Jan 2002 - 
TL;DR: Based on the beam coherence-polarization (BCP) matrix method and propagation law of mutual intensity, the intensity and polarization changes of partially coherent and partially polarized light in Young's experiment are studied in this article.