Ultracold neutral plasma expansion in a strong uniform magnetic field

被引:11
作者
Sprenkle, R. Tucker [1 ]
Bergeson, S. D. [1 ]
Silvestri, Luciano G. [2 ]
Murillo, Michael S. [2 ]
机构
[1] Brigham Young Univ, Dept Phys & Astron, Provo, UT 84602 USA
[2] Michigan State Univ, Dept Computat Math Sci & Engn, E Lansing, MI 48824 USA
基金
美国国家科学基金会;
关键词
DIFFUSION;
D O I
10.1103/PhysRevE.105.045201
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
In strongly magnetized neutral plasmas, electron motion is reduced perpendicular to the magnetic field direction. This changes dynamical plasma properties such as temperature equilibration, spatial density evolution, electron pressure, and thermal and electrical conductivity. In this paper we report measurements of free plasma expansion in the presence of a strong magnetic field. We image laser-induced fluorescence from an ultracold neutral Ca+ plasma to map the plasma size as a function of time for a range of magnetic field strengths. The asymptotic expansion velocity perpendicular to the magnetic field direction falls rapidly with increasing magnetic field strength. We observe that the initially Gaussian spatial distribution remains Gaussian throughout the expansion in both the parallel and perpendicular directions. We compare these observations with a diffusion model and with a self-similar expansion model and show that neither of these models reproduces the observed behavior over the entire range of magnetic fields used in this study. Modeling the expansion of a magnetized ultracold plasma poses a nontrivial theoretical challenge.
引用
收藏
页数:10
相关论文
共 59 条
[1]   Dissipative dynamics of atomic and molecular Rydberg gases: Avalanche to ultracold plasma states of strong coupling [J].
Aghigh, M. ;
Grant, K. ;
Haenel, R. ;
Marroquin, K. L. ;
Martins, F. B., V ;
Sadegi, H. ;
Schulz-Weiling, M. ;
Sous, J. ;
Wang, R. ;
Keller, J. S. ;
Grant, E. R. .
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS, 2020, 53 (07)
[2]  
[Anonymous], 2004, FUNDAMENTALS PLASMA
[3]   Transport coefficients in high temperature gauge theories, 1. Leading-log results [J].
Arnold, P ;
Moore, GD ;
Yaffe, LG .
JOURNAL OF HIGH ENERGY PHYSICS, 2000, (11)
[4]   Transport regimes spanning magnetization-coupling phase space [J].
Baalrud, Scott D. ;
Daligault, Jerome .
PHYSICAL REVIEW E, 2017, 96 (04)
[5]   Temperature anisotropy relaxation of the one-component plasma [J].
Baalrud, Scott D. ;
Daligault, Jerome .
CONTRIBUTIONS TO PLASMA PHYSICS, 2017, 57 (6-7) :238-251
[6]   Effective Potential Theory for Transport Coefficients across Coupling Regimes [J].
Baalrud, Scott D. ;
Daligault, Jerome .
PHYSICAL REVIEW LETTERS, 2013, 110 (23)
[7]   Velocity Relaxation in a Strongly Coupled Plasma [J].
Bannasch, G. ;
Castro, J. ;
McQuillen, P. ;
Pohl, T. ;
Killian, T. C. .
PHYSICAL REVIEW LETTERS, 2012, 109 (18)
[8]   STATISTICAL-MECHANICS OF SIMPLE COULOMB-SYSTEMS [J].
BAUS, M ;
HANSEN, JP .
PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS, 1980, 59 (01) :1-94
[9]   Exploring the crossover between high-energy-density plasma and ultracold neutral plasma physics [J].
Bergeson, Scott D. ;
Baalrud, Scott D. ;
Ellison, C. Leland ;
Grant, Edward ;
Graziani, Frank R. ;
Killian, Thomas C. ;
Murillo, Michael S. ;
Roberts, Jacob L. ;
Stanton, Liam G. .
PHYSICS OF PLASMAS, 2019, 26 (10)
[10]   REVIEW OF EXPERIMENTS ON DIFFUSION OF PLASMA ACROSS MAGNETIC FIELD [J].
BOESCHOTEN, F .
JOURNAL OF NUCLEAR ENERGY PART C-PLASMA PHYSICS ACCELERATORS THERMONUCLEAR RESEARCH, 1964, 6 (4PC) :339-+