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Informational Limits in Optical Polarimetry and Vectorial Imaging

English · Hardback

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Description

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Central to this thesis is the characterisation and exploitation of electromagnetic properties of light in imaging and measurement systems. To this end an information theoretic approach is used to formulate a hitherto lacking, quantitative definition of polarisation resolution, and to establish fundamental precision limits in electromagnetic systems. Furthermore rigorous modelling tools are developed for propagation of arbitrary electromagnetic fields, including for example stochastic fields exhibiting properties such as partial polarisation, through high numerical aperture optics. Finally these ideas are applied to the development, characterisation and optimisation of a number of topical optical systems: polarisation imaging; multiplexed optical data storage; and single molecule measurements. The work has implications for all optical imaging systems where polarisation of light is of concern.

List of contents

Introduction.- Fundamentals of probability theory.- Information and estimation theory.- Vectorial optics.- Information in polarimetry.- Information in polarisation imaging.- Multiplexed Optical Data Storage (MODS).- Single molecule studies.- Conclusions.- Appendices.

Summary

Central to this thesis is the characterisation and exploitation of electromagnetic properties of light in imaging and measurement systems. To this end an information theoretic approach is used to formulate a hitherto lacking, quantitative definition of polarisation resolution, and to establish fundamental precision limits in electromagnetic systems. Furthermore rigorous modelling tools are developed for propagation of arbitrary electromagnetic fields, including for example stochastic fields exhibiting properties such as partial polarisation, through high numerical aperture optics. Finally these ideas are applied to the development, characterisation and optimisation of a number of topical optical systems: polarisation imaging; multiplexed optical data storage; and single molecule measurements. The work has implications for all optical imaging systems where polarisation of light is of concern.

Product details

Authors Matthew R Foreman, Matthew R. Foreman
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.04.2012
 
EAN 9783642285271
ISBN 978-3-642-28527-1
No. of pages 232
Weight 485 g
Illustrations XVI, 232 p.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Electricity, magnetism, optics

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