Wigner transform and stability of kinetic envelope soliton in an electron depleted dusty plasma with two temperature non-thermal ions

被引:2
|
作者
Chaudhuri, Shatadru [1 ]
Chowdhury, A. Roy [2 ]
机构
[1] Jadavpur Univ, Dept Phys, Kolkata 700032, India
[2] Jadavpur Univ, High Energy Phys Div, Dept Phys, Kolkata 700032, India
关键词
Wigner stability; kinetic dusty plasma; electron depleted; bright-dark envelope solitons; modulational stability; three component plasma; ACOUSTIC-WAVES; MODULATION; MODEL;
D O I
10.1088/1402-4896/aaecb5
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A nonlinear theory of amplitude modulation of electrostatic envelopes in an electron depleted dusty plasma consisting of negatively charged dust grains and two temperature non-thermal ions developed using Vlasov-Poisson equation. By using the Krylov-Bogoliubov-Mitropolsky method a nonlinear Schrodinger equation is derived. The dispersion relation is written in terms of moments of plasma dispersion function 'Z (zeta)' is analyzed numerically. Spatially periodic unstable modes are studied with the help of Wigner transform defining the spectral density at the initial time. This is actually a statistical approach to modulational stability very relevant due to kinetic formulation of our problem. In this method one can study various form of initial spectral distribution and their stability leading to the various conditions on plasma parameters. Our standard modulational stability is the special case of such a treatment. The explicit solution of the nonlinear Schrodinger equation is seen to be different depending upon the sign of 'P' and 'Q' (the dispersive and nonlinear coefficient). In one case we get the standard envelope soliton and the other one leads to either to envelope hole or envelope shock solution. It is very interesting to notice that the non-thermal behavior of the ions have a controlling nature on the modulational stability of the system. The advantage of working with the Wigner transformation is that it can be used as a tool for homogenization, that is in a situation with large number of waves. This type of analysis of modulational instability are now-a-days very important because the quantum nature of plasma is gaining importance.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] SOLITARY WAVE SOLUTIONS OF MODIFIED KADOMSTEV- PETVIASHIVILI EQUATION FOR HOT ADIABATIC DUSTY PLASMA HAVING NON-THERMAL IONS WITH TRAPPED ELECTRONS
    Dev, Apul Narayan
    Subedi, Rajesh
    Sarma, Jnanjyoti
    PLASMA AND FUSION SCIENCE: FROM FUNDAMENTAL RESEARCH TO TECHNOLOGICAL APPLICATIONS, 2018, : 47 - 65
  • [42] Soliton energy of the Kadomtsev-Petviashvili equation in warm dusty plasma with variable dust charge, two-temperature ions, and nonthermal electrons
    Pakzad, Hamid Reza
    ASTROPHYSICS AND SPACE SCIENCE, 2010, 326 (01) : 69 - 75
  • [43] Floating Potentials in Two-Electron Temperature Plasma with Two Species of Positive Ions: Kinetic Model and PIC Simulation
    Cercek, M.
    Filipic, G.
    Gyergyek, T.
    Kovacic, J.
    CONTRIBUTIONS TO PLASMA PHYSICS, 2010, 50 (09) : 909 - 914
  • [44] Electron temperature and density of non-thermal atmospheric pressure argon plasma jet by convective wave packet model
    Sornsakdanuphap, Jirapong
    Suanpoot, Pradoong
    Hong, Young June
    Ghimire, Bhagirath
    Cho, Guangsup
    Uhm, Han Sup
    Kim, Doyoung
    Kim, Yun Ji
    Choi, Eun Ha
    JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2017, 70 (11) : 979 - 989
  • [45] Electron temperature and density of non-thermal atmospheric pressure argon plasma jet by convective wave packet model
    Jirapong Sornsakdanuphap
    Pradoong Suanpoot
    Young June Hong
    Bhagirath Ghimire
    Guangsup Cho
    Han Sup Uhm
    Doyoung Kim
    Yun Ji Kim
    Eun Ha Choi
    Journal of the Korean Physical Society, 2017, 70 : 979 - 989
  • [46] Modified Korteweg-de Vries equation in a negative ion rich hot adiabatic dusty plasma with non-thermal ion and trapped electron
    Adhikary, N. C.
    Deka, M. K.
    Dev, A. N.
    Sarmah, J.
    PHYSICS OF PLASMAS, 2014, 21 (08)
  • [47] Effect of Negative Ion Concentration, Positron Density, Temperature of Both Ions and Positron on Amplitude and Width for Non-thermal Plasma
    Chattopadhyay, Sankar
    AFRICAN REVIEW OF PHYSICS, 2015, 10 : 485 - 502
  • [48] Arbitrary Amplitude Dust Kinetic Alfven Solitary Waves (DKASW) in a Three-Component Magnetized Plasma with Non-Thermal Electrons and Ions
    Choudhury, M.
    PLASMA PHYSICS REPORTS, 2024, 50 (01) : 65 - 76
  • [49] Temporal evolution of electron density and electron temperature profiles in a non-thermal atmospheric-pressure plasma measured by laser Thomson scattering
    Bolouki, Nima
    Tomita, Kentaro
    Hassaballa, Safwat
    Yamagata, Yukihiko
    Uchino, Kiichiro
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2015, 54 (01) : 016101
  • [50] Electron density in a non-thermal atmospheric discharge in contact with water and the effect of water temperature on plasma-water interactions
    van Rooij, Olivier
    Ahlborn, Olivia
    Sobota, Ana
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2024, 57 (38)