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UM E-Theses Collection (澳門大學電子學位論文庫)

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Title

An ITP approach for steady Schrodinger equation with adaptive finite element method

English Abstract

In this thesis, an adaptive numerical method is proposed to solve 2D Schrödinger equation with imaginary time propagation approach. The time-independent Schrödinger equation is transfered to the time-dependent one by Wick rotation. Then the temporal equation is discretized spatially with finite element methods, and temporally with Crank-Nicolson scheme. To handle the possible singular hebavior of the solution, the moving mesh method based on the harmonic maps is introduced. Several linear and nonlinear problems are examined by our method, which successfully show that our method is an effective alternative way to find the ground state of the system by solving the eigenvalue problems. v To My Parents

Issue date

2016.

Author

Kuang, Yang

Faculty

Faculty of Science and Technology

Department

Department of Mathematics

Degree

M.Sc.

Subject

Schrodinger equation

Finite element method

Supervisor

Hu, Guang Hui

Files In This Item

Full-text (Intranet only)

Location
1/F Zone C
Library URL
991001942609706306