Strong x-ray emission from high-temperature plasmas produced by intense irradiation of clusters
The interaction of an intense laser pulse with large ({similar_to}100 A) clusters present in pulsed gas jets is shown to produce novel plasmas with electron temperatures far in excess of that predicted by above-threshold ionization theory. The enhanced absorption of the laser light by the dense clus...
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Veröffentlicht in: | Physical Review Letters 1995-10, Vol.75 (17), p.3122-3125 |
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container_title | Physical Review Letters |
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creator | Ditmire, T Donnelly, T Falcone, RW Perry, MD |
description | The interaction of an intense laser pulse with large ({similar_to}100 A) clusters present in pulsed gas jets is shown to produce novel plasmas with electron temperatures far in excess of that predicted by above-threshold ionization theory. The enhanced absorption of the laser light by the dense clusters results in the production of high ion charge states via collisional ionization resulting in strong x-ray emission from the hot plasma. {copyright} {ital 1995} {ital The} {ital American} {ital Physical} {ital Society}. |
doi_str_mv | 10.1103/physrevlett.75.3122 |
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language | eng |
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source | American Physical Society Journals |
subjects | 70 PLASMA PHYSICS AND FUSION ABSORPTION CLUSTER EMISSION MODEL ELECTRON TEMPERATURE HOT PLASMA IONIZATION LASERS PHYSICS PLASMA PRODUCTION PULSES RAMAN EFFECT X-RAY EMISSION ANALYSIS |
title | Strong x-ray emission from high-temperature plasmas produced by intense irradiation of clusters |
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