[1] Datta S., Quantum Transport: Atom to Transistor [M], Cambridge University Press, 2005, New York.
[2] Griffiths D.J., Introduction to Quantum Mechanics [M], Second Edition Addison-Wesley, 2004, Boston.
[3] Joe Y.S., Satanin A.M., Kim C.S., Classical analogy of Fano resonances [J], Phys. Scr., 2006, 74 :259-266.
[4] Soriano A., Navarro E.A., Porti J.A., Such V., Analysis of the finite difference time domain technique to solve the Schrodinger equation for quantum devices [J], J. Appl. Phys., 2004, 95 8011-8018.
[5] Sullivan D.M., Citrin D.S., Determining quantum eigenfunctions in three-dimensional nanoscale structures [J], J. Appl. Phys., 2005, 97(10): 104305 - 104305-6.
[6] 文舸一, 1999,辛算法及其在电磁场方程中的应用 [J],微波学报, 15(1): 68 - 78.
K. Y. Wen, Symplectic algorithm and its application in the electromagnetic field equations [J], Microwave Journal, 1996, 15(1):68-78.
[7] 冯康,等, 2003,哈密尔顿系统的辛几何算法 [M],杭州:浙江科学技术出版社, 358 - 359.
K. Feng, Symplectic algorithm in Hamilton system [M], Zhejiang Science and Technology Publishing House: 358-359.
[8] G. B. Ren and J. M. Rorison, Eigenvalue problem of the Schrodinger equation via the finite-difference time-domain method [J], Physical Review E, 2004,69: 036705-1-4
[9] Hanquan Wang, Numerical studies on the split-step finite difference method for nonlinear Schrodinger equations [J], Applied Mathematics and Computation, 2005, 170: 17–35
[10] 简荣华, 赵翠兰,半导体量子阱中强耦合磁极化子的性质 [J], 量子电子学报,2010, 27 (4): 485–490.
H. R. Jan, C. L. Zhao,The property of strong coupling magnetopolaron in semicoductor quantum wells,
Chinese Journal of quantum electronics, 2010, 27(4):485-490.
|