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Wave Propagation in a Warm Magnetoplasma with Coulomb Interactions

Wave Propagation in a Warm Magnetoplasma with Coulomb Interactions PDF Author: Robert J. Papa
Publisher:
ISBN:
Category : Ionosphere
Languages : en
Pages : 100

Book Description
Electromagnetic waves propagating through partially ionized gases can be severely attenuated and suffer distortion. This has important consequences in the design of any communication and radar system in which waves must propagate through an intervening plasma medium, such as in reentry communications and ionospheric propagation. In this report, formulas are derived that can predict such wave attenuation characteristics more accurately and for a wider range of plasma conditions than already existing theories. The conventional Appleton-Hartree equation used in ionospheric propagation studies gives the index of refraction of a wave travelling through a plasma in a magnetic field in terms of the properties of the plasma. This conventional Appleton-Hartree formula neglects important effects such as the random thermal motion of the particles, which can cause nonlocal effects. Also, the energy dependence of the electron-neutral collision frequency can alter the nature of the wave attenuation process. In the report, a generalization of the Appleton-Hartree equation is made to include these effects. A kinetic equation is solved which includes the effects of energy-dependent electron-neutral collisions, Coulomb encounters and spatial dispersion. The perturbation method used in solving the kinetic equation assumes that the effects of electron-neutral collisions and Coulomb encounters are dominant, and spatial dispersion effects are weak.

Wave Propagation in a Warm Magnetoplasma with Coulomb Interactions

Wave Propagation in a Warm Magnetoplasma with Coulomb Interactions PDF Author: Robert J. Papa
Publisher:
ISBN:
Category : Ionosphere
Languages : en
Pages : 100

Book Description
Electromagnetic waves propagating through partially ionized gases can be severely attenuated and suffer distortion. This has important consequences in the design of any communication and radar system in which waves must propagate through an intervening plasma medium, such as in reentry communications and ionospheric propagation. In this report, formulas are derived that can predict such wave attenuation characteristics more accurately and for a wider range of plasma conditions than already existing theories. The conventional Appleton-Hartree equation used in ionospheric propagation studies gives the index of refraction of a wave travelling through a plasma in a magnetic field in terms of the properties of the plasma. This conventional Appleton-Hartree formula neglects important effects such as the random thermal motion of the particles, which can cause nonlocal effects. Also, the energy dependence of the electron-neutral collision frequency can alter the nature of the wave attenuation process. In the report, a generalization of the Appleton-Hartree equation is made to include these effects. A kinetic equation is solved which includes the effects of energy-dependent electron-neutral collisions, Coulomb encounters and spatial dispersion. The perturbation method used in solving the kinetic equation assumes that the effects of electron-neutral collisions and Coulomb encounters are dominant, and spatial dispersion effects are weak.

Wave Propagation in a Warm Magnetoplasma with Coulomb Interactions

Wave Propagation in a Warm Magnetoplasma with Coulomb Interactions PDF Author: Robert J. Papa
Publisher:
ISBN:
Category : Ionosphere
Languages : en
Pages : 0

Book Description
Electromagnetic waves propagating through partially ionized gases can be severely attenuated and suffer distortion. This has important consequences in the design of any communication and radar system in which waves must propagate through an intervening plasma medium, such as in reentry communications and ionospheric propagation. In this report, formulas are derived that can predict such wave attenuation characteristics more accurately and for a wider range of plasma conditions than already existing theories. The conventional Appleton-Hartree equation used in ionospheric propagation studies gives the index of refraction of a wave travelling through a plasma in a magnetic field in terms of the properties of the plasma. This conventional Appleton-Hartree formula neglects important effects such as the random thermal motion of the particles, which can cause nonlocal effects. Also, the energy dependence of the electron-neutral collision frequency can alter the nature of the wave attenuation process. In the report, a generalization of the Appleton-Hartree equation is made to include these effects. A kinetic equation is solved which includes the effects of energy-dependent electron-neutral collisions, Coulomb encounters and spatial dispersion. The perturbation method used in solving the kinetic equation assumes that the effects of electron-neutral collisions and Coulomb encounters are dominant, and spatial dispersion effects are weak.

Wave Propagation in a Hot Magnetoplasma with Coulomb Collisions

Wave Propagation in a Hot Magnetoplasma with Coulomb Collisions PDF Author: Robert J. Papa
Publisher:
ISBN:
Category : Coulomb excitation
Languages : en
Pages : 68

Book Description


Wave Propagation in a Hot Magnetoplasma with Coulomb Collisions

Wave Propagation in a Hot Magnetoplasma with Coulomb Collisions PDF Author: Robert J. Papa
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Wave Propagation in a Hot Magnetoplasma with Velocity Dependent Collision Frequencies and Coulomb Encounters

Wave Propagation in a Hot Magnetoplasma with Velocity Dependent Collision Frequencies and Coulomb Encounters PDF Author: Robert John Papa
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Numerical Solution of the Dispersion Relations for a Hot Magnetoplasma with Collisions

Numerical Solution of the Dispersion Relations for a Hot Magnetoplasma with Collisions PDF Author: Robert J. Papa
Publisher:
ISBN:
Category : Dispersion relations
Languages : en
Pages : 48

Book Description
Detailed numerical studies have been made on the dispersion relations for electromagnetic waves propagating in partially ionized gases immersed in a dc magnetic field. Accurate values of the attenuation constant and phase shift are needed in the design of radio communications systems where waves must propagate through an ionized gas (such as in reentry communications systems), in the design of radar jamming devices used during missile reentry, and in the analytical study of ionospheric propagation phenomena. The numerical solution of the dispersion relations enable the effects of collisionless wave damping, velocity-dependent electron-neutral collisions, and Coulomb encounters to be studied. The attenuation and phase shift of waves propagating through a plasma are dependent upon the signal frequency, plasma temperature, plasma density, degree of ionization, and cross sections for electron scattering. Graphs are presented which enable attenuation constants and phase shifts to be readily evaluated for a very wide range of possible plasma conditions. (Author).

Report on Research at AFCRL.

Report on Research at AFCRL. PDF Author: Air Force Cambridge Research Laboratories (U.S.)
Publisher:
ISBN:
Category : Geophysics
Languages : en
Pages : 384

Book Description


On Linear Waves in a Warm Magnetoplasma

On Linear Waves in a Warm Magnetoplasma PDF Author: H. W. A. M. Rompa
Publisher:
ISBN:
Category :
Languages : en
Pages : 82

Book Description


Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 1282

Book Description
Lists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.

Plasma Physics Index

Plasma Physics Index PDF Author:
Publisher:
ISBN:
Category : Plasma (Ionized gases)
Languages : en
Pages : 936

Book Description