Current position: Home >> Scientific Research >> Paper Publications

Two-dimensional quantum hydrodynamic model for the heating of a solid target using a Gaussian cluster

Release Time:2019-03-09  Hits:

Indexed by: Journal Article

Date of Publication: 2012-12-01

Journal: LASER AND PARTICLE BEAMS

Included Journals: EI、SCIE、Scopus

Volume: 30

Issue: 4

Page Number: 671-677

ISSN: 0263-0346

Key Words: Cluster; Uniform heating; Warm dense matter

Abstract: This paper presents numerical simulations to study the heating of a two-dimensional (2D) solid target under an ion cluster interaction. 2D quantum hydrodynamic (QHD) model is employed for the heating of solid target to warm dense matter on a picosecond time scale. A Gaussian cluster is used to uniformly heat the solid target to a temperature of several eV. The density and temperature of the target are calculated by a full self-consistent treatment of the QHD formalisms and the Poisson's equation. The technique described in this paper provides a method for creating uniformly heated strongly coupled plasma states.

Prev One:Effects of Fast-Ion Injection on a Magnetized Sheath near a Floating Wall

Next One:Effect of bulk electric field reversal on the bounce resonance heating in dual-frequency capacitively coupled electronegative plasmas