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Dynamics of wave propagation for (1+2)-dimensional Chiral nonlinear Schrodinger in quantum theory | ||
| Computational Methods for Differential Equations | ||
| مقالات آماده انتشار، پذیرفته شده، انتشار آنلاین از تاریخ 20 فروردین 1405 اصل مقاله (2.62 M) | ||
| نوع مقاله: Research Paper | ||
| شناسه دیجیتال (DOI): 10.22034/cmde.2025.66470.3105 | ||
| نویسندگان | ||
| Sibel Tarla1؛ Karmina K. Ali2؛ Abdullahi Yusuf* 3؛ Soheil Salahshour4 | ||
| 1Department of Mathematics, Faculty of Science, Firat University, Elazig, Turkey. | ||
| 2Department of Mathematics, College of Science, University of Zakho, Zakho, Iraq. | ||
| 31.Department of Mathematics, Faculty of Science, Firat University, Elazig, Turkey. \\ 2. Department of Mathematics, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai 602105, Tamil Nadu, India. \\ 3. Faculty of Engineering and Natural Sciences, Istanbul Okan University, Istanbul, Turkey. | ||
| 4Faculty of Engineering and Natural Sciences, Istanbul Okan University, Istanbul, Turkey. | ||
| چکیده | ||
| We investigate and extracted many solutions for the (1+2)-dimensional Chiral nonlinear Schrödinger equation by new modified unified auxiliary equation method in this paper. The considered method is a enhanced version of the unified auxiliary equation method. The mentioned model is used to discuss the wave in quantum field theory. Consequently, some different and more general solutions are obtained such as singular, periodic, hyperbolic, dark-bright, trigonometric, exponential, and Jacobi elliptic functions. These solutions are more general in nature and offer different approaches to address the problem at hand. To elucidate the dynamics of these solutions, their figures are presented. These figures provide a visual representation of the behavior of the solutions, enabling a better understanding of their characteristics. | ||
| کلیدواژهها | ||
| The (1+2)-dimensional Chiral non-linear Schrödinger equation؛ Modified unified auxiliary equation method؛ Exact solutions | ||
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