Cosmic ray production by vibrating neutron stars.
Cosmic ray production and acceleration by hydromagnetic waves from vibrating neutron stars
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Cosmic ray production and acceleration by hydromagnetic waves from vibrating neutron stars
General dynamical effects of suprathermal gas particles on hydromagnetic wave propagation in interstellar space
The two general classes of models that deal with the required heating of stellar chromospheres and coronae assume that outer stellar atmospheres are heated by hydrodynamic or by magnetohydrodynamic (MHD) waves and that these waves are generated by turbulent motions in the stellar convection zones. This paper considers the types of MHD waves and the source of these waves in stars like sun, the efficiency of the generation of MHD waves, and the manner of propagation and energy dissipation of MHD waves. It is shown that the basic criteria for the validity of any theory of MHD wave heating must account for the mean level of heating observed in stellar chromospheres and coronae, and for the range of radiative losses observed for a given spectral type. It is also required that the MHD wave heating theory accounts for the existence of inhomogeneities in stellar atmospheres. The results obtained indicate that magnetic tube waves might supply enough energy for the chromospheric and coronal heating and might also account for the observed range of variations of stellar radiative losses for a given spectral type.
Geometric attenuation of hydromagnetic waves in the earths atmosphere
Spectrum of hydromagnetic waves in exosphere due to magnetic storms
In the area of solar physics, new calculations of the acoustic wave energy fluxes generated in the solar convective zone was performed. The original theory developed was corrected by including a new frequency factor describing temporal variations of the turbulent energy spectrum. We have modified the original Stein code by including this new frequency factor, and tested the code extensively. Another possible source of the mechanical energy generated in the solar convective zone is the excitation of magnetic flux tube waves which can carry energy along the tubes far away from the region. The problem as to how efficiently those waves are generated in the Sun was recently solved. The propagation of nonlinear magnetic tube waves in the solar atmosphere was calculated, and mode coupling, shock formation, and heating of the local medium was studied. The wave trapping problems and evaluation of critical frequencies for wave reflection in the solar atmosphere was studied. It was shown that the role played by Alfven waves in the wind accelerations and the coronal hole heating is dominant. Presently, we are performing calculations of wave energy fluxes generated in late-type dwarf stars and studying physical processes responsible for the heating of stellar chromospheres and coronae. In the area of physics of waves, a new analytical approach for studying linear Alfven waves in smoothly nonuniform media was recently developed. This approach is presently being extended to study the propagation of linear and nonlinear magnetohydrodynamic (MHD) waves in stratified, nonisothermal and solar atmosphere. The Lighthill theory of sound generation to nonisothermal media (with a special temperature distribution) was extended. Energy cascade by nonlinear MHD waves and possible chaos driven by these waves are presently considered.
Long period hydromagnetic waves in magnetosphere and coupling to solar wind studied by Explorer XIV
Dispersion relation for hydromagnetic waves in infinite collisionless plasma in static magnetic field, using numerical solutions
Explorer VI satellite observations of low frequency hydromagnetic wave fluctuations in distant geomagnetic field
Perturbation technique used for approximate solutions to nonlinear hydromagnetic equations of cold collisionless plasma
Detection of hydromagnetic waves, generated by nuclear explosions, by a rubidium vapor magnetometer
Investigation of hydromagnetic waves which violate adiabatic invariants of geomagnetically trapped charged particle motion
Dynamical behavior of cosmic ray gases, noting modes of hydromagnetic wave propagation and static equilibrium configurations for thermal interstellar gas and field
Cyclotron resonance instability of ion cyclotron and magnetosonic waves propagating at angle to magnetic field in infinite uniform plasma
Hydromagnetic waves in plasma with isotropic and nonisotropic pressure perpendicular to a magnetic field
Low frequency hydromagnetic waves in distant geomagnetic field - explorer vi satellite
Hydromagnetic wave induced variations in plasma velocity and magnetic field in interplanetary space measured by Mariner II
Low-frequency hydromagnetic waves in geomagnetic field - data obtained from magnetometer, aspect indicator and scintillation counter on explorer 6 satellite