Acta Optica Sinica, Volume. 28, Issue 2, 381(2008)
Quantum Mechanical Analysis of Aberration in Cr Atom Lens Generated by a Laser Standing Wave
[2] [2] J. J. McClelland, R. E. Scholten, E. C. Palm et al.. Laser-focused atomic deposition[J]. Science, 1993, 262(5153): 877~880
[3] [3] Windell H. Oskay, Daniel A. Steck, Mark G. Raizen. Observation of cumulative spatial focusing of atoms[J]. Phys. Rev. Lett., 2002, 89(28): 283001-1~283001-4
[4] [4] E. te Sligte, B. Smeets, R. C. M. Bosch et al.. Progress towards atom lithography on iron[J]. Microelectron. Engng., 2003, 67~68: 664~669
[7] [7] J. J. McClelland. Atom-optical properties of a standing-wave light field[J]. J. Opt. Soc. Am. B, 1995, 12(10): 1761~1768
[8] [8] K. K. Behringer, M. Prentiss, G. L. Timp et al.. Calculation of atomic positions in nanometer-scale direct-write optical lithography with an optical standing wave[J]. J. Opt. Soc. Am. B, 1994, 11(7): 1166~1176
[10] [10] Chang Jae Lee. Quantum-mechanical analysis of atom lithography[J]. Phys. Rev. A, 2000, 61: 063604-1~063604-9
[11] [11] William H. Press, Saul A. Teukolsky, William T. Vetterling et al.. Numerical Recipes in C[M]. New York: Cambridge University Press, 1992
[12] [12] William D. Phillips. Laser cooling and trapping of neutral atoms[J]. Reviews of Modern Physics, 1998, 70(3): 721~741
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Zhao Min, Wang Zhanshan, Ma Bin, Li Fosheng. Quantum Mechanical Analysis of Aberration in Cr Atom Lens Generated by a Laser Standing Wave[J]. Acta Optica Sinica, 2008, 28(2): 381