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Optical pulse propagation with minimal approximations

Source: Phys. Rev. A 81, 013819 (2010); doi:10.1103/PhysRevA.81.013819

Published 25 January 2010

PACS
  • 42.25.Bs
    Optical wave propagation, transmission and absorption
  • 42.65.Re
    Ultrafast processes; optical pulse generation and pulse compression
  • 78.20.Ci
    Optical constants
  • YEAR: 2010
PUBLICATION DATA
ISSN:
1553-9601 (online)
Publisher:
AIP is a member of CrossRef APS
Paul Kinsler
Blackett Laboratory, Imperial College London, Prince Consort Road, London SW7 2AZ, United Kingdom
Propagation equations for optical pulses are needed to assist in describing applications in ever more extreme situations—including those in metamaterials with linear and nonlinear magnetic responses. Here I show how to derive a single first-order propagation equation using a minimum of approximations and a straightforward “factorization” mathematical scheme. The approach generates exact coupled bidirectional equations, after which it is clear that the description can be reduced to a single unidirectional first-order wave equation by means of a simple “slow evolution” approximation, where the optical pulse changes little over the distance of one wavelength. It also allows a direct term-to-term comparison of an exact bidirectional theory with the approximate unidirectional theory. ©2010 The American Physical Society
History: Received 10 July 2009; published 25 January 2010
Permalink: http://link.aps.org/abstract/PRA/v81/e013819
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