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Experimental Verification of the Shear-Modified Ion-Acoustic Instability
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Citations
17
References
2002
Year
AeroacousticsSmia Growth RateEngineeringPhysicsMechanical EngineeringApplied PhysicsShear-modified Ion-acoustic InstabilityPlasma InstabilityMagnetohydrodynamicsPlasma PhysicsPredicted Shear-induced ShiftSound PropagationNonlinear AcousticWave Phase Velocity
The predicted shear-induced shift of the wave phase velocity, the essence of the shear-modified ion-acoustic (SMIA) instability mechanism that reduces ion Landau damping for otherwise damped ion-acoustic waves [V. Gavrishchaka et al., 80, 728 (1998)], is verified with direct measurements in a strongly magnetized laboratory plasma. The SMIA growth rate is shown to increase with increasing shear, as predicted. SMIA wave propagation is shown to be possible at both small and large angles to the magnetic field, consistent with space observations of ion-acoustic-like waves.
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