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Atmospheric characterization issues for high-energy laser propagation through the atmosphere

Steven D. Westerman, Naresh C. Mehta

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Abstract

Sensitivity analyses for high-energy laser atmospheric propagation have been performed on the basis of a four-dimensional wave optics propagation code which defines the requirements for atmospheric dynamics measurements. Initial estimates are presented for range, spatial and temporal resolutions, and accuracy. It is noted that these analyses have considered parameter fluctuations as uniform throughout the atmosphere; the determination of frequency requirements in different regimes of the atmosphere entails a more sophisticated analysis encompassing height-dependent fluctuations.

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What this paper is about

Sensitivity analyses for high-energy laser atmospheric propagation have been performed on the basis of a four-dimensional wave optics propagation code which defines the requirements for atmospheric dynamics measurements. Initial estimates are presented for range, spatial and temporal resolutions, and accuracy. It is noted that these analyses have considered parameter fluctuations as uniform throughout the atmosphere; the determination of frequency requirements in different regimes of the atmosphere entails a more sophisticated analysis encompassing height-dependent fluctuations.

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Available abstract

Sensitivity analyses for high-energy laser atmospheric propagation have been performed on the basis of a four-dimensional wave optics propagation code which defines the requirements for atmospheric dynamics measurements. Initial estimates are presented for range, spatial and temporal resolutions, and accuracy. It is noted that these analyses have considered parameter fluctuations as uniform throughout the atmosphere; the determination of frequency requirements in different regimes of the atmosphere entails a more sophisticated analysis encompassing height-dependent fluctuations.

Key concepts: Atmosphere (unit), Atmospheric model, Atmospheric optics, Laser, Range (aeronautics), Energy (signal processing), Sensitivity (control systems), Characterization (materials science)

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