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NASA NTRS · 20110013649

Hypersonic Wake Diagnostics Using Laser Induced Fluorescence Techniques

Abstract

A review of recent research performed in iodine that involves a two photon absorption of light at 193 nm will be discussed, and it's potential application to velocimetry measurements in a hypersonic flow field will be described. An alternative seed atom, Krypton, will be presented as a good candidate for performing nonintrusive hypersonic flow diagnostics. Krypton has a metastable state with a lifetime of approximately 43 s which would prove useful for time of flight measurement (TOF) and a sensitivity to collisions that can be utilized for density measurements. Calculations using modest laser energies and experimental values show an efficiency of excited state production to be on the order of 10(exp -6) for a two photon absorption at 193 nm.

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BibTeXRIS

Mills, Jack L., Sukenik, Charles I., Balla, Robert J.. 2011-06-27. Hypersonic Wake Diagnostics Using Laser Induced Fluorescence Techniques. https://ntrs.nasa.gov/citations/20110013649

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