The Atmospheric Mutual Coherence Function from the First and Second Rytov Approximations and Its Comparison to That of Strong Fluctuation Theory (Paperback)


An expression for the mutual coherence function (MCF) of an electromagnetic beam wave propagating through atmospheric turbulence is derived within the confines of the Rytov approximation. It is shown that both the first and second Rytov approximations are required. The Rytov MCF is then compared to that which issues from the parabolic equation method of strong fluctuation theory. The agreement is found to be quite good in the weak fluctuation case. However, an instability is observed for the special case of beam wave intensities. The source of the instabilities is identified to be the characteristic way beam wave amplitudes are treated within the Rytov method.

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Product Description

An expression for the mutual coherence function (MCF) of an electromagnetic beam wave propagating through atmospheric turbulence is derived within the confines of the Rytov approximation. It is shown that both the first and second Rytov approximations are required. The Rytov MCF is then compared to that which issues from the parabolic equation method of strong fluctuation theory. The agreement is found to be quite good in the weak fluctuation case. However, an instability is observed for the special case of beam wave intensities. The source of the instabilities is identified to be the characteristic way beam wave amplitudes are treated within the Rytov method.

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Product Details

General

Imprint

Bibliogov

Country of origin

United States

Release date

June 2013

Availability

Supplier out of stock. If you add this item to your wish list we will let you know when it becomes available.

First published

June 2013

Authors

Creators

Dimensions

246 x 189 x 2mm (L x W x T)

Format

Paperback - Trade

Pages

38

ISBN-13

978-1-289-07667-2

Barcode

9781289076672

Categories

LSN

1-289-07667-7



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