We study numerically the dependence of the critical magnetic Reynolds number Rmc for the turbulent small-scale dynamo on the hydrodynamic Reynolds number Re. The turbulence is statistically homogeneous, isotropic, and mirror-symmetric. We are interested in the regime of low magnetic Prandtl number Pm = Rm/Re < 1, which is relevant for stellar convective zones, protostellar disks, and laboratory liquid-metal experiments. The two asymptotic possibilities are Rmc → const as Re → ∞ (a small-scale dynamo exists at low Pm) or Rmc/Re = Pmc → const as Re → ∞ (no small-scale dynamo exists at low Pm). Results obtained in two independent sets of simulations of MHD turbulence using grid and spectral codes are brought together and found to be in quan...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
Small-scale dynamos are expected to operate in all astrophysical fluids that are turbulent and elect...
We study numerically the dependence of the critical magnetic Reynolds number Rmc for the turbulent s...
We study numerically the dependence of the critical magnetic Reynolds number Rmc for the turbulent s...
Context. Direct numerical simulations of plasmas have shown that the dynamo effect is efficient eve...
This paper is a detailed report on a programme of direct numerical simulations of incompressible non...
19 pages, 9 figuresInternational audienceWe investigate the dynamo problem in the limit of small mag...
International audienceWe investigate the dynamo problem in the limit of small magnetic Prandtl numbe...
Planetary and stellar dynamos likely result from turbulent motions in magnetofluids with kinematic v...
doi:10.1088/1367-2630/9/8/300 Abstract. This paper is a detailed report on a programme of direct num...
Planetary and stellar dynamos likely result from turbulent motions in magnetofluids with kinematic v...
We demonstrate that the critical magnetic Reynolds number Rm c for a turbulent nonhelical dynamo in...
We demonstrate that the critical magnetic Reynolds number Rm c for a turbulent nonhelical dynamo in...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
Small-scale dynamos are expected to operate in all astrophysical fluids that are turbulent and elect...
We study numerically the dependence of the critical magnetic Reynolds number Rmc for the turbulent s...
We study numerically the dependence of the critical magnetic Reynolds number Rmc for the turbulent s...
Context. Direct numerical simulations of plasmas have shown that the dynamo effect is efficient eve...
This paper is a detailed report on a programme of direct numerical simulations of incompressible non...
19 pages, 9 figuresInternational audienceWe investigate the dynamo problem in the limit of small mag...
International audienceWe investigate the dynamo problem in the limit of small magnetic Prandtl numbe...
Planetary and stellar dynamos likely result from turbulent motions in magnetofluids with kinematic v...
doi:10.1088/1367-2630/9/8/300 Abstract. This paper is a detailed report on a programme of direct num...
Planetary and stellar dynamos likely result from turbulent motions in magnetofluids with kinematic v...
We demonstrate that the critical magnetic Reynolds number Rm c for a turbulent nonhelical dynamo in...
We demonstrate that the critical magnetic Reynolds number Rm c for a turbulent nonhelical dynamo in...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
4 pages, 4 figuresWe present a three--pronged numerical approach to the dynamo problem at low magnet...
Small-scale dynamos are expected to operate in all astrophysical fluids that are turbulent and elect...