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Research Article

On the nonextensivity contributions in collisional plasma damping waves

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Pages 683-688 | Received 09 Oct 2021, Accepted 17 Jun 2022, Published online: 22 Jul 2022

References

  • Popel SI, Golub' AP, Losseva TV. Weakly dissipative dust-ionacoustic solitons. Phys Rev E. 2003;67(5):Aritcle ID 056402.
  • Ghosh S. Effect of ionization on ion acoustic solitary waves in a collisional dusty plasma. J Plasma Phys. 2005;71(4):519–526.
  • Sultana S, Kourakis I. Electron-scale dissipative electrostatic solitons in multi-species plasmas. Phys Plasmas. 2015;22(10):Article ID 102302.
  • Wang Y, Guo X, Lu Y, et al. The nonadiabatic dust charge variation on dust acoustic solitary and shock waves in strongly coupled dusty plasmas. Phy Let A. 2016;380(1–2):215–221.
  • Chatterjee P, Ali R, Saha A. Analytical solitary wave solution of the dust ion acoustic waves for the damped forced Korteweg–de Vries equation in superthermal plasmas. Zeitschrift fur Naturforschung a. 2018;73:2.
  • Sharma P, Das A, Tamang J, et al. Dynamical properties of dust-ion-acoustic wave solutions in a nonextensive collisional dusty plasma. J Taibah Univ Sci. 2021;15(1):710–720.
  • Nakamura Y, Odagiri T, Tsukabayashi I. Ion-acoustic waves in a multicomponent plasma with negative ions. Plasma Phys Control Fusion. 1997;39(1):105–115.
  • Horányi M. Charged dust dynamics in the solar system. Ann Rev Astron Astrophys. 1996;34(1):383–418.
  • Popel SI, Tsytovich VN, Yu MY. Shock structures in plasmas containing variable-charge macro particles. Astrophys Space Sci. 1997;256(1/2):107–123.
  • Moolla S, Bharuthram R, Baboolal S. Reduction of dust acoustic soliton amplitude due to dust charge variation. Phys Plasmas. 2005;12(4):Article ID 042310.
  • Gill TS, Saini NS, Kaur H. The Kadomstev-Petviashvili equation in dusty plasma with variable dust charge and two temperature ions. Chaos Solitons Fract. 2006;28(4):1106–1111.
  • Tang RA, Xue JK. Stability of oblique modulation of dust-acoustic waves in a warm dusty plasma with dust charge variation. Phys Plasmas. 2003;10(9):3800–3803.
  • Moslem WM. Linear and nonlinear properties of dust-acoustic waves in collisional, magnetized dusty plasmas. Phys Plasmas. 2003;10(8):3168–3173.
  • Vranjes J, Petrovic D, Pandey BP, et al. Electrostatic modes in multi-ion and pair-ion collisional plasmas. Phys Plasmas. 2008;15:Article ID 072104.
  • Losseva TV, Popel SI, Golub' AP, et al. Weakly dissipative dust-ion-acoustic solitons in complex plasmas and the effect of electromagnetic radiation. Phys Plasmas. 2012;19(1):Article ID 013703.
  • El-Labany SK, El-Shewy EK, Abd El-Razek HN, et al. Cylindrical three-dimensional dust-ion acoustic propagation in plasmas. Commun Theor Phys. 2018;70(3):325.
  • El-Taibany WF, EL-Labany SK, El-Helbawy AS. Dust-acoustic solitary and periodic waves in magnetized self-gravito-electrostatic opposite polarity dusty plasmas. Eur Phys J Plus. 2022;137(2):261.
  • El-Labany SK, Moslem WM, Mowafy AE. Effects of trapped electron temperature, dust charge variations, and grain radius on the existence of the dust-ion-acoustic waves. Phys Plasmas. 2003;10(11):4217–4223.
  • El-Hanbaly AM, Sallah M, El-Shewy EK, et al. Kinematic dust viscosity effect on linear and nonlinear dust-acoustic waves in space dusty plasmas with nonthermal ions. J Exp Theor Phys. 2015;121(4):669–679.
  • Zaghbeer SK, Salah HH, Sheta NH, et al. Effect of nonextensive electron and ion on dust acoustic rogue waves in dusty plasma of opposite polarity. Astrophys Space Sci. 2014;353(2):493–500.
  • Jacquinot J, McVey BD, Scharer JE. Mode conversion of the fast magnetosonic wave in a deuterium-hydrogen tokamak plasma. Phys Rev Lett. 1977;39(2):88–91.
  • Lakhina GS, Verheest F. Alfveénic solitons in ultrarelativistic electron-positron plasmas. Astrophys Space Sci. 1997;253(1):97–106.
  • Oohara W, Hatakeyama R. Electrostatic waves in a paired fullerene-ion plasma. Phys Rev Lett. 2005;95(17):Article ID 175003.
  • Oohara W, Hatakeyama R. Basic studies of the generation and collective motion of pair-ion plasmas. Phys Plasmas. 2007;14(5):Article ID 055704.
  • Elwakil SA, El-Shewy EK, Abdelwahed HG. Envelope ionacoustic solitary waves in a plasma with positive-negative ions and nonthermal electrons. Phys Plasmas. 2010;17(5):Article ID 052301.
  • El-Labany SK, Moslem WM, El-Bedwehy NA, et al. Rogue wave in Titan's atmosphere. Astrophys Space Sci. 2012;338(1):3–8.
  • Saleem H. A criterion for pure pair-ion plasmas and the role of quasineutrality in nonlinear dynamics. Phys Plasmas. 2007;14:Article ID 014505.
  • Sabry R, Moslem WM, Shukla PK. Fully nonlinear ionacoustic solitary waves in a plasma with positive-negative ions and nonthermal electrons. Phys Plasmas. 2009;16: Article ID 032302.
  • Abdelwahed HG, El-shewy EK, Zahran MA, et al. On the rogue wave propagation in ion pair superthermal plasma. Phys Plasmas. 2016;23:Article ID 022102.
  • Tandberg-Hansen E, Emslie AG. The physics of solar flares. Cambridge: Cambridge University Press; 1988.
  • Popel SI, Vladimirov SV, Shukla PK. Ion-acoustic solitons in electron-positron-ion plasmas. Phys Plasmas. 1995;2(3):716–719.
  • Roy K, Misra AP, Chatterjee P. Ion-acoustic shocks in quantum electron-positron-ion plasmas. Phys Plasmas. 2008;15(3):Article ID 032310.
  • Markowich PA, Ringhofer CA, Schmeiser C. Kinetic transport models for semiconductors 83. Vienna: Semiconductor Equations Springer; 1990.
  • Jung YD. Quantum-mechanical effects on electron– electron scattering in dense high-temperature plasmas. Phys Plasmas. 2001;8(8):3842–3844.
  • Haas F, Manfredi G, Goedert J. Nyquist method for Wigner-Poisson quantum plasmas. Phys Rev E. 2001;64(2):Article ID 026413.
  • Shokri B, Rukhadze AA. Quantum surface wave on a thin plasma layer. Phys Plasmas. 1999;6(9):3450–3454.
  • Misra AP, Roy Chowdhury A. Modulation of dust acoustic waves with a quantum correction. Phys Plasmas. 2006;13:Article ID 072305.
  • Chowdhury NA, Mannan A, Hasan MM, et al. Heavy ion-acoustic rogue waves in electron-positron multi-ion plasmas. Chaos Interdisci J Nonlinear Sci. 2017;27(9):Article ID 093105.
  • Ferdousi M, Sultana S, Mamun AA. Oblique propagation of ionacoustic solitary waves in a magnetized electron-positron-ion plasma. 2015 Phys Plasmas. 2017;22(3):Article ID 032117.
  • Shaha MG, Rahmanb MM, Hossenc MR, et al. Heavy ion-acoustic solitary waves and double layers in a multi-ion plasma. Plasma Phys Rep. 2018;44(9):861–869.
  • Hatami MM, Tribeche M, Mamun AA. Effects of positive ion temperature and negative ion number density on arbitrary amplitude ionacoustic solitary waves in nonextensive electronegative plasma. Astrophys Space Sci. 2019;364(1):21.
  • El-Shewy EK, El-Rahman AA. Cylindrical dissipative soliton propagation in nonthermal mesospheric plasmas. Phys Scr. 2018;93(11):Article ID 115202.
  • Saha A, Prasad PK, Banerjee S. Bifurcation of ion-acoustic superperiodic waves in auroral zone of Earth'smagnetosphere. Astrophys Space Sci. 2019;364(10):180.
  • Kumar R, Malik HK. Modified Korteweg-de Vries soliton reflection in a magnetized plasma with dust grains and trapped electrons. Phys Plasmas. 2013;20(3):Article ID 032112.
  • Malik HK, Kumar R, Lonngren KE, et al. Collision of ion acoustic solitary waves in a magnetized plasma: effect of dust grains and trapped electrons. Phys Rev E. 2015;92(6):Article ID 063107.
  • Tribeche M, Djebarni L, Amour R. Ion-acoustic solitary waves in a plasma with a q-nonextensive electron velocity distribution. Phys Plasmas. 2010;17(4):Article ID 042114.
  • Saha A, Chatterjee P. Solitonic, periodic, quasiperiodic and chaotic structures of dust ion acoustic waves in nonextensive dusty plasmas. Eur Phys J D. 2015;69(9):395.
  • Bacha M, Gougam LA, Tribeche M. Ion-acoustic rogue waves in magnetized solar wind plasma with nonextensive electrons. Physica A Stat Mech Appl. 2017;466:199–210.
  • Bains AS, Tribeche M, Saini NS, et al. Modulation instability and rogue wave structures of positron-acoustic waves in q-nonextensive plasmas. Physica A Stat Mech Appl. 2017;466:111–119. d.
  • Saha A, Chatterjee P. Electron acoustic blow up solitary waves and periodic waves in an unmagnetized plasma with kappa distributed hot electrons. Astrophys Space Sci. 2014;353(1):163–168.
  • Tamang J, Sarkar K, Saha A. Solitary wave solution and dynamic transition of dust ion acoustic waves in a collisional nonextensive dusty plasma with ionization effect. Phys A Stat Mech Appl. 2018;505:18–34.
  • El-Taibany WF, El-Bedwehy NA, El-Shafeay NA, et al. Three-dimensional rogue waves in Earth's ionosphere. Galaxies. 2021;9(3):48.
  • Silva R, Plastino AR, Lima JAS. A Maxwellian path to the q-nonextensive velocity distribution function. Phys Lett A. 1998;249(5–6):401–408.
  • El-Awady EI, Moslem WM. On a plasma having nonextensive electrons and positrons: rogue and solitary wave propagation. Phys Plasmas. 2011;18(8):Article ID 082306.
  • Karpman VI, Maslov EM. Perturbation theory for solitons. Sov Phys JETP. 1977;46:281.
  • Nakamura Y, Tsukabayashi I. Observation of modified Korteweg-de Vries solitons in a multicomponent plasma with negative ions. Phys Rev Lett. 1984;52(26):2356–2359.