Published March 2000 | Version v1
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Simulation of intense short-pulse laser-plasma interaction

  • 1. Advanced Photon Research Center, Kansai Research Establishment, Japan Atomic Energy Research Inst., Kizu, Kyoto (Japan)

Description

We have completed the massive parallelization of a 2-dimensional giga-particle code and have achieved a 530-fold acceleration rate with 512 processing elements (PE's). Using this we have implemented a simulation of the interaction of a solid thin film and a high intensity laser and have discovered a phenomenon in which high quality short pulses from the far ultraviolet to soft X-rays are generated at the back surface of the thin layer. We have also introduced the atomic process database code (Hullac) and have the possibility for high precision simulations of X-ray laser radiation. With respect to laser acceleration we have the possibility to quantitatively evaluate relativistic self-focusing assumed to occur in higher intensity fields. Ion acceleration from a solid target and an underdense plasma irradiated by an intense and an ultra intense laser, respectively, has also been studied by particle-in-cell (PIC) simulations. (author)

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Part of:
Proceedings of the first symposium on advanced photon research

Additional details

Publishing Information

Imprint Title
Proceedings of the first symposium on advanced photon research
Imprint Pagination
363 p.
Journal Page Range
p. 37-40
Report number
JAERI-Conf--2000-006

Conference

Title
1. symposium on advanced photon research
Dates
8-9 Nov 1999
Place
Seika, Kyoto (Japan)

INIS

Country of Publication
Japan
Country of Input or Organization
Japan
INIS RN
32006578
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ACCELERATION; COLLISIONS; COMPUTERIZED SIMULATION; H CODES; PARTICLE INTERACTIONS; PARTICLE KINEMATICS; PLASMA; PULSES; THIN FILMS; TWO-DIMENSIONAL CALCULATIONS; X-RAY LASERS
Descriptors DEC
COMPUTER CODES; FILMS; INTERACTIONS; LASERS; SIMULATION

Optional Information

Notes
5 refs., 4 figs.