مشخصات پژوهش

صفحه نخست /Head-on collision of ion ...
عنوان Head-on collision of ion acoustic waves in electron-ion-positron plasmas with trapped-distributed electrons
نوع پژوهش مقاله چاپ شده
کلیدواژه‌ها Gardner equation; Reductive perturbation theory; Solitons; Multi Solitons; Breathers
چکیده This study examines the head-on collision of ion-acoustic solitons in a one-dimensional, hot, collisionless electron-positronion (e-p-i) plasma, incorporating mobile ions, κ-distributed trapped electrons, and Maxwellian positrons. Using the modified Poincare-Lighthill-Kuo (PLK) method, we derive modified Korteweg-de Vries (mKdV) equations and analyze phase shifts in soliton trajectories post-interaction. Results reveal that only rarefactive electrostatic nonlinear waves can propagate within the range of parameters relevant to experiments, showing symmetrical soliton behavior during head-on collisions, with identical amplitude and width. Additionally, soliton amplitude is found to decrease as the electron spectral index (κe) and positronto- electron temperature ratio (βe) increase, with a sharp decline observed within the range 0 < κe < 5. Phase shift analysis shows that smaller κe values result in a steady increase in phase shifts, which becomes asymptotic as κe grows, while phase shifts decrease with rising σi (temperature ratio of ions to electrons). These results have practical applications in astrophysical and laboratory plasma environments where soliton interactions play a crucial role. Understanding head-on soliton collisions helps predict plasma behavior in environments such as the interstellar medium, fusion devices, and space plasmas, where wave stability, energy transport, and plasma heating are influenced by nonlinear interactions in systems with trapped particles and nonthermal distributions.
پژوهشگران علیرضا عبدی کیان (نفر اول)، داور گروه فیزیک-محمد اقبالی داور گروه فیزیک-محمد اقبالی (نفر سوم)، اودی ناران گوش (نفر دوم)