Implications of the Pioneer 10 measurements of the Jovian magnetic field for theories of Io-modulated decametric radiation
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Engineering topics
Publications and source records attributed to Wu, C.-S..
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The shock system observed in the solar wind by Pioneer 9 and Ogo 5 on Feb. 2, 1969, consisted of the following major discontinuities: a forward slow shock; a forward fast shock; a tangential discontinuity at which the density dropped sharply and the flow direction changed; a tangential discontinuity at which the magnetic field strength jumped to an unusually high value; two closely spaced tangential discontinuities that bracketed a region of even greater field strength and that fronted a region of very cool, very dense, helium-enriched plasma; a reverse fast shock of low Mach number; and a second reverse fast shock of very low Mach number. The event had aspects of both corotating and flare-induced shock systems; it is suggested that the source of the disturbances was a flare occurring at or near an M region.
A pair of sharp closely spaced discontinuities in the solar wind was recorded by the high time resolution instruments aboard Ogo 5 on Mar. 14, 1968. There is plasma turbulence within the double structure, and there appear to be small-amplitude hydromagnetic waves radiating from the discontinuities. The generation of the plasma turbulence is discussed in terms of magnetic drift waves. Although it seems probable that the surfaces are tangential discontinuities, arguments are also advanced that the double structure may represent the Petschek mechanism in which rapid field-line merging occurs between standing waves.
Electron trapping effect on ion-wave instability in plasma, deriving expression for saturation energy spectrum
Nondispersive LF mode in magnetized plasma with frequencies lower than ion cyclotron frequency, discussing plasma stability in presence of electron drift
Quasi-linear theory of turbulent plasmas with fluctuation fields and coherent waves
HF conductivity of quasi-equilibrium isotropic fully ionized two-temperature plasma
Unstable transverse waves in anisotropic multicomponent plasma, establishing stability criteria, noting role of electron distribution
Rostoker particle theorem for multispecies plasma in framework of Klimontovich formalism
Kinetic equation for inhomogeneous plasma in uniform external magnetic field, for application in studies of transport and high frequency wave phenomena
Homogeneous, fully ionized plasma HF conductivity computed using kinetic equation, showing application to two-temperature plasma
Effect of uniform magnetic field on HF CONDUCTIVITY of plasma in quasi-equilibrium
Anisotropic ion or electron temperature relaxation times to isotropy and to equilibrium calculated, using plasma kinetic equation including dynamic shielding
Expression for HF conductivity using BBGKY /BOGOLIUBOV-BORN-GREEN-KIRKWOOD-YVON/ HIERARCHY for fully ionized plasma in stable unperturbed state
Operator used in derivation of plasma kinetic equation, expressing integral of pair correlation function for stable and unstable cases via Fourier transform