Hostname: page-component-76fb5796d-25wd4 Total loading time: 0 Render date: 2024-04-26T21:42:24.363Z Has data issue: false hasContentIssue false

Effect of non-extensivity during the collision between inward and outward ion acoustic solitary waves in cylindrical and spherical geometry

Published online by Cambridge University Press:  14 May 2013

UDAY NARAYAN GHOSH
Affiliation:
Department of Mathematics, Siksha Bhavana, Visva Bharati University, Santiniketan-731 235, West Bengal, India (unghosh1@rediffmail.com)
PRASANTA CHATTERJEE
Affiliation:
Department of Mathematics, Siksha Bhavana, Visva Bharati University, Santiniketan-731 235, West Bengal, India (unghosh1@rediffmail.com)

Abstract

The head-on collision between two cylindrical/spherical ion acoustic solitary waves (IASWs) in un-magnetized plasmas comprising inertial ions and q-non-extensive electrons and positrons is investigated using the extended version of the Poincaré–Lighthill–Kuo perturbation method. How the interactions are taking place in cylindrical and spherical geometry are studied, and the collision is shown at different times. The non-planar geometry can modify analytical phase shifts following the head-on collision are derived. The effects of q-non-extensive electrons and positrons on the phase shift are studied. It is shown that the properties of the interaction of IASWs in cylindrical and spherical geometry are very different.

Type
Papers
Copyright
Copyright © Cambridge University Press 2013 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Chatterjee, P. and Ghosh, U. N. 2011 Head-on collision of ion acoustic solitary waves in electron-positron-ion plasma with superthermal electrons and positrons. Euro. Phys. J. D 63, 413.Google Scholar
Chatterjee, P., Ghosh, U. N., Roy, K., Muniandy, S. V., Wong, C. S. and Sahu, B. 2010 Head-on collision of ion acoustic solitary waves in electron-positron-ion plasma with superthermal electrons. Phys. Plasmas 17 122114.Google Scholar
Eslami, P., Mottaghizadeh, M. and Pakzad, H. R. 2011 Nonplanar ion-acoustic solitary waves with superthermal electrons in warm plasma. Phys. Plasmas 18, 072305.CrossRefGoogle Scholar
Gardner, C. S., Greener, J. M., Kruskal, M. D. and Miura, R. M. 1967 Method for solving the Korteweg devries equation. Phys. Rev. Lett. 19, 1095.CrossRefGoogle Scholar
Ghosh, S. and Bharutram, R. 2008 Astrophys. Space Sci. 314, 121.CrossRefGoogle Scholar
Ghosh, D. K., Chatterjee, P. and Ghosh, U. N. 2012a Nonplanar dust-ion acoustic Gardner solitons in a dusty plasma with q non-extensive electron velocity distribution. Phys. Plasmas 19, 033703.CrossRefGoogle Scholar
Ghosh, U. N., Chatterjee, P. and Kundu, S. K. 2012b The effect of q-distributed ions during the head-on collision of dust acoustic solitary waves. Astrophys. Space Sci. 339, 255.CrossRefGoogle Scholar
Ghosh, U. N., Chatterjee, P. and Roychoudhury, R. 2012c The effects of q-distributed electrons on the head-on collision of ion acoustic solitary waves. Phys. Plasmas 19, 012113.CrossRefGoogle Scholar
Ghosh, U. N., Roy, K. and Chatterjee, P. 2011 Head-on collision of dust acoustic solitary waves in a four component dusty plasma with nonthermal ions. Phys. Plasmas 18 103703.CrossRefGoogle Scholar
Greaves, R. G. and Surko, C. M. 1995 An electron-positron beam-plasma experiment. Phys. Rev. Lett. 75, 38463849.CrossRefGoogle ScholarPubMed
Greaves, R. G., Tinkle, M. D. and Surko, C. M. 1994 Creation and uses of positron plasmas. Phys. Plasmas 1, 1439.CrossRefGoogle Scholar
Hansen, E. T. and Emshie, A. G. 1988 The Physics of Solar Flares. Cambridge, UK: Cambridge University Press.Google Scholar
Helander, P. and Ward, D. J. 2003 Positron creation and annihilation in tokamak plasmas with runaway electrons. Phys. Rev. Lett. 90, 135004.CrossRefGoogle ScholarPubMed
Hershkowitz, N. and Romesser, T. 1974 Observation of ion acoustic cylindrical solitons. Phys. Rev. Lett. 32, 581.CrossRefGoogle Scholar
Huang, G. and Velarde, M. G. 1996 Head-on collision of two concentric cylindrical ion acoustic solitary waves. Phys. Rev. E 53, 2988.Google ScholarPubMed
Kundu, S. K., Chatterjee, P. and Ghosh, U. N. 2012 Head-on collision of dust acoustic solitary waves with variable dust charge and two temperature ions in an unmagnetized plasma. Astrophys. Space Sci. 340, 87.CrossRefGoogle Scholar
Leubner, M. P. 2008 Consequences of entropy bifurcation in non-Maxwellian astrophysical environments. Nonlinear Processes Geophys. 15, 531.CrossRefGoogle Scholar
Li, S. C. 2010 The effects of Bohm potential on ion-acoustic solitary waves interaction in a nonplanar quantum plasma. Phys. Plasmas 17 082307.CrossRefGoogle Scholar
Lima, J. A. S., Silva, R. Jr. and Santos, J. 2000 Plasma oscillations and nonextensive statistics. Phys. Rev. E 61, 3260.Google Scholar
Mamun, A. A. and Mannan, A. 2011 Nonplanar double layers in plasmas with opposite polarity dust. JEPT Lett. 94, 356.Google Scholar
Mamun, A. A. and Shukla, P. K. 2001 Spherical and cylindrical dust acoustic solitary waves. Phys. Lett. A 290, 173175.CrossRefGoogle Scholar
Mamun, A. A. and Shukla, P. K. 2002 Cylindrical and spherical dust ion-acoustic solitary waves. Phys. Plasmas 9, 1468.CrossRefGoogle Scholar
Mamun, A. A. and Shukla, P. K. 2011 Cylindrical and spherical ion shock waves in a strongly coupled degenerate plasma. Europhys. Lett. 94, 65002.CrossRefGoogle Scholar
Maxon, S. and Viecelli, J. 1974 Cylindrical solitons. Phys. Fluids 17, 16141616.CrossRefGoogle Scholar
Michel, F. C. 1982 Theory of Pulsar magnetospheres. Rev. Mod. Phys. 54, 166.CrossRefGoogle Scholar
Miller, H. R. and Witta, P. J. 1987 Active Galactic Nuclei. Berlin, Germany: Springer-Verlag.Google Scholar
Popel, S. I., Vladimirov, S. V. and Shukla, P. K. 1995 Ion-acoustic solitons in electron-positron-ion plasmas. Phys. Plasmas 2, 716.CrossRefGoogle Scholar
Rees, M. J. 1983 What the astrophysicist wants from the very early universe. In: The Very Early Universe (eds. Gibbons, G. W., Hawking, S. W. and Siklas, S.). Cambridge, UK: Cambridge University Press, pp. 2958.Google Scholar
Renyi, A. 1955 On a new axiomatic theory of probability. Acta Math. Hung. 6, 285.CrossRefGoogle Scholar
Sahu, B. and Roychoudhury, R. 2004 Cylindrical and spherical ion-acoustic shock waves in multielectron temperature collisional plasma. Phys. Plasmas 11, 4871.CrossRefGoogle Scholar
Shukla, P. K., Rao, N. N., Yu, M. Y. and Tsintsa, N. L. 1986 Relativistic nonlinear effects in plasma. Phys. Rep. 138, 1.CrossRefGoogle Scholar
Su, C. H. and Miura, R. M. 1980 On head-on collisions between two solitary waves. Phys. Rev. Lett. 98, 509.Google Scholar
Surko, C. M., Leventhal, M. and Passner, A. 1989 Positron plasma in the laboratory. Phys. Rev. Lett. 62, 901904.CrossRefGoogle ScholarPubMed
Surko, C. M. and Murphy, T. J. 1990 Use of the positron as a plasma particle. Phys. Fluids B 2, 1372.CrossRefGoogle Scholar
Tribeche, M. and Merriche, A. 2011 Nonextensive dust-acoustic solitary waves. Phys. Plasmas 18, 034502.CrossRefGoogle Scholar
Trivelpiece, A. W. 1972 Comments. Plasma Phys. Control. Fusion 1, 57.Google Scholar
Tsallis, C. 1988 Possible generalization of Boltzmann-Gibbs entropy. J. Stat. Phys. 52, 479.CrossRefGoogle Scholar
Tsytovich, V. and Wharton, C. B. 1978 Comments. Plasma Phys. Control. Fusion 4, 91.Google Scholar
Wesson, J. A., Gill, R. D., Hugon, M., Schüller, F. C., Snipes, J. A., Ward, D. J., Bartlett, D. V., Campbell, D. J., Duperrex, P. A., Edwards, A. W.et al. 1989 Disruptions in JET. Nucl. Fusion 29, 641.CrossRefGoogle Scholar
Xue, J. K. 2003 Cylindrical and spherical dust-ion acoustic shock waves. Phys. Plasmas 10, 4893.CrossRefGoogle Scholar
Xue, J. K. 2004a Cylindrical and spherical ion-acoustic solitary waves with dissipative effects. Phys. Lett. A 322, 225230.CrossRefGoogle Scholar
Xue, J. K. 2004b Head-on collision of dust-acoustic solitary waves. Phys. Rev. E 69, 016403.Google ScholarPubMed
Yasmin, S., Asaduzzaman, M. and Mamun, A. A. 2012 Evolution of higher order nonlinear equation for the dust-ion acoustic waves in non-extensive plasma. Phys. Plasmas 19, 103703.CrossRefGoogle Scholar
Zabusky, N. J. and Kruskal, M. D. 1965 Interaction of solitons in a collisionless plasma and the recurrence of initial states. Phys. Rev. Lett. 15, 240.CrossRefGoogle Scholar