Published March 1995 | Version v1
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Diagnosis of laser ablated carbon particles measured by time-resolved X-ray absorption spectroscopy

  • 1. Japan Atomic Energy Research Inst., Takasaki, Gunma (Japan). Takasaki Radiation Chemistry Research Establishment

Description

The time and space resolved properties of laser ablated carbon particles were measured by X-ray absorption spectroscopy using LPX as an X-ray source. The energy density of the irradiation laser on the sample was in the range of 0.5-20J/cm2 and the time delay was varied between 0 and 120ns. The absorption spectra exhibited several peaks originated from level to level transitions and an intense broad absorption in the energy range of C-K edge. At a delay time of 120ns, the absorption peak from 1s→2p transition of neutral carbon atom (C0), C-, C+ and C2+ ions were observed. The absorption peak from C0 was stronger as the probing position was closer to the sample surface and decreased rapidly with distance from the sample surface. The absorption peak C2+ ion was observed only at comparatively distant positions from surface. The maximum speeds of highly charged ions were faster than that of neutral atoms and negative charged ions. The neutral atom and lower charged ions were emitted from the sample even after laser irradiation. The spatial distributions of the laser ablated carbon particles in the localized helium gas environment were measured. In the helium gas environment, the ablation plume was depressed by the helium cloud generated on the top of ablation plume. (author)

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Part of:
Innovative laser technologies in nuclear energy. Proceedings of the 6th international symposium on advanced nuclear energy research

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Publishing Information

Imprint Title
Innovative laser technologies in nuclear energy. Proceedings of the 6th international symposium on advanced nuclear energy research
Imprint Pagination
724 p.
Journal Page Range
p. 873-880.
Report number
JAERI-Conf--95-005(v.2)

Conference

Title
6. international symposium on advanced nuclear energy research.
Dates
23-25 Mar 1994.
Place
Mito (Japan).

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