Magnetized strongly coupled plasmas and how to realize them in a dusty plasma setup
arXiv:1210.2516 · doi:10.1088/0963-0252/22/1/015007
Abstract
Strongly coupled plasmas in which the interaction energy exceeds the kinetic energy play an important role in many astrophysical and laboratory systems including compact stars, laser plasmas and dusty plasmas. They exhibit many unusual collective properties, such as liquid or crystalline behaviour, peculiar oscillation spectra and transport properties. Recently, strongly coupled plasmas were studied in the presence of a strong magnetic field by computer simulations, and strong modifications of their transport properties and oscillation spectra were observed. While strong magnetization is common in stellar systems it is practically impossible to achieve in complex plasmas due to the large mass of the dust particles. Here we discuss a recently demonstrated approach to achieve very strong "magnetization" by a rotation of the neutral gas, and we present new results for macroscopic two-dimensional systems.
References in corpus (9)
- Superdiffusion and non-Gaussian statistics in a driven-dissipative 2D dusty plasma
- The physics of neutron stars
- Diffusion in a strongly coupled magnetized plasma
- Magnetizing a complex plasma without a magnetic field
- Static and dynamic shear viscosity of a single layer complex plasma
- Nonlinear magnetoplasmons in strongly coupled Yukawa plasmas
- Oscillation Spectrum of a Magnetized Strongly Coupled One-Component-Plasma
- Wave spectra of 2D Yukawa solids and liquids in the presence of a magnetic field
- Higher harmonics of the magnetoplasmon in strongly coupled Coulomb and Yukawa systems
Cited by in corpus (13)
- Superdiffusion of 2D Yukawa liquids due to a perpendicular magnetic field
- Magnetoplasmons in rotating dusty plasmas
- Dynamics of two-dimensional complex plasmas in a magnetic field
- Self-diffusion in two-dimensional quasi-magnetized rotating dusty plasmas
- The Effect of Correlations on the Heat Transport in a Magnetized Plasma
- Transport Regimes Spanning Magnetization-Coupling Phase Space
- Effect of magnetic field on the velocity autocorrelation and the caging of particles in two-dimensional Yukawa liquids
- Spontaneous generation of a temperature anisotropy in a strongly coupled magnetized plasma
- Controlling strongly correlated dust clusters with lasers
- Extended space and time correlations in strongly magnetized plasmas
- dc electrical conductivity in strongly magnetized plasmas
- Simultaneous effect of an external magnetic field and gas-induced friction on the caging of particles in two-dimensional Yukawa systems
- System-Bath Approach to Rotating Brownian Motion