Bulletin of the American Physical Society
65th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 30–November 3 2023; Denver, Colorado
Session JO04: Plasma Astrophysics II
2:00 PM–5:00 PM,
Tuesday, October 31, 2023
Room: Governor's Square 11
Chair: Mel Abler, Space Science Institute
Abstract: JO04.00014 : Electrostatic Waves in Venus
4:36 PM–4:48 PM
Withdrawn
Presenter:
Sara A Ali
(Department of Physics and Astronomy West Virginia University)
Authors:
Sara A Ali
(Department of Physics and Astronomy West Virginia University)
Alaa Fayad
(Ruhr University Bochum)
Reda Tolba
(Centre for Theoretical Physics, The British University in Egypt (BUE), El-Shorouk City, Cairo, Egypt)
Horst Fichtner
(Institut f¨ur Theoretische Physik IV, Ruhr-Universit¨at Bochum, 44780 Bochum, Germany)
Marian Lazar
(Centre for mathematical Plasma Astrophysics, Department of Mathematics, KU Leuven, Celestijnenlaan 200B, 3001 Leuven, Belgium)
Waleed M Moslem
(Centre for Theoretical Physics, The British University in Egypt (BUE), El-Shorouk City, Cairo, Egypt - Department of Physics, Faculty of Science, Port Said University, Port Sa)
Collaboration:
S. A. Morsi, A. A. Fayad, R. E. Tolba, H. Fichtner, M. Lazar, and W. M. Moslem
Soliton(quasi-parallel and oblique) and double-layer wave solutions. The conditions and propagation characteristics of the fully non-linear IAWs and their dependence on solar wind parameters are compared with the available space observations. Regarding electrostatic soliton(quasi-parallel) waves, our theoretical model predicts a maximum electric field of 7.5 mV/m and a pulse time duration of 3 ms. The output of the fast Fourier transformation power spectra of the electric field pulse is a broad-band electrostatic noise in a frequency range of ∼0.1–4 kHz.These FFT calculations are in good agreement with PVO’s observations. Therefore, we can predict other electrostatic wave propagation, soliton(oblique), and double-layer waves.
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