Статья: Solution of a two-dimensional time-dependent Schrödinger equation describing two interacting atoms in an optical trap (2024)

Читать онлайн

We introduce a numerical method to solve the two-dimensional time-dependent Schrödinger equation, which characterizes a system of two atoms with a finite-range interaction potential confined within a harmonic oscillator trap. We choose a Gaussian-shaped potential for the interaction potential. Such a system has been previously studied analytically, except that a zero-range interaction potential was used instead. We observe a strong agreement between the results for the two types of interactions. Also, we investigate the one-dimensional time-dependent Schrödinger equation for the relative motion and compute the ground state energy level as a function of the coupling strength.

Ключевые фразы: split operator method, finite differences, time-dependent schrödinger equation, quantum harmonic oscillator, gaussian interaction potential, zero-range interaction, pseudopotential, cold atoms, optical trap
Автор (ы): Ишмухамедов И. С., Ишмухамедов А. С., Джаланкузов Ж. Э
Журнал: DISCRETE AND CONTINUOUS MODELS AND APPLIED COMPUTATIONAL SCIENCE

Предпросмотр статьи

Идентификаторы и классификаторы

УДК
519.63. Численные методы решения дифференциальных уравнений с частными производными
539.1. Ядерная, атомная, молекулярная физика
539.6. Межмолекулярные силы
Для цитирования:
ИШМУХАМЕДОВ И. С., ИШМУХАМЕДОВ А. С., ДЖАЛАНКУЗОВ Ж. Э. SOLUTION OF A TWO-DIMENSIONAL TIME-DEPENDENT SCHRÖDINGER EQUATION DESCRIBING TWO INTERACTING ATOMS IN AN OPTICAL TRAP // DISCRETE AND CONTINUOUS MODELS AND APPLIED COMPUTATIONAL SCIENCE. 2024. № 2, ТОМ 32
Текстовый фрагмент статьи