Published September 2006 | Version v1
Journal article

Short-pulse laser absorption in very steep plasma density gradients

  • 1. Department of Chemistry, University of Antwerp, B-2610 Wilrijk-Antwerp (Belgium)
  • 2. Institute of Applied Physics and Computational Mathematics, P.O. Box 8009, Beijing 100088 (China)
  • 3. Shanghai Institute of Optics and Fine Mechanics, Shanghai 201800 (China)
  • 4. Institute of Applied Physics and Computational Mathematics, P.O. Box 2101, Beijing 100088 (China)

Description

An analytical fluid model for resonance absorption during the oblique incidence by femtosecond laser pulses on a small-scale-length density plasma [k0L(set-membership sign)(0.1,10)] is proposed. The physics of resonance absorption is analyzed more clearly as we separate the electric field into an electromagnetic part and an electrostatic part. It is found that the characteristics of the physical quantities (fractional absorption, optimum angle, etc.) in a small-scale-length plasma are quite different from the predictions of classical theory. Absorption processes are generally dependent on the density scale length. For shorter scale length or higher laser intensity, vacuum heating tends to be dominant. It is shown that the electrons being pulled out and then returned to the plasma at the interface layer by the wave field can lead to a phenomenon like wave breaking. This can lead to heating of the plasma at the expanse of the wave energy. It is found that the optimum angle is independent of the laser intensity while the absorption rate increases with the laser intensity, and the absorption rate can reach as high as 25%

Additional details

Identifiers

Publishing Information

Journal Title
Physics of Plasmas
Journal Volume
13
Journal Issue
9
Journal Page Range
p. 094504-094504.4
ISSN
1070-664X
CODEN
PHPAEN

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
38023233
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Descriptors DEI
ELECTRIC FIELDS; ELECTRONS; LASERS; LENGTH; LIGHT TRANSMISSION; PLASMA; PLASMA DENSITY; PLASMA HEATING; PLASMA WAVES; PULSES; RESONANCE ABSORPTION
Descriptors DEC
ABSORPTION; DIMENSIONS; ELEMENTARY PARTICLES; FERMIONS; HEATING; LEPTONS; SORPTION; TRANSMISSION

Optional Information

Notes
(c) 2006 American Institute of Physics