The quantum pendulum: Small and large

被引:30
作者
Baker, GL [1 ]
Blackburn, JA
Smith, HJT
机构
[1] Bryn Athyn Coll New Church, Div Math & Sci, Bryn Athyn, PA 19009 USA
[2] Wilfrid Laurier Univ, Dept Phys & Comp, Waterloo, ON N2L 3C5, Canada
[3] Univ Waterloo, Dept Phys, Waterloo, ON N2L 3G1, Canada
关键词
D O I
10.1119/1.1456069
中图分类号
G40 [教育学];
学科分类号
040101 ; 120403 ;
摘要
The quantum pendulum finds application in surprising contexts. We use commercially available software to numerically solve the Schrodinger equation for a microscopic pendulum subject to molecular (electromagnetic) restoring forces, and a macroscopic pendulum subject to a gravitational restoring force. The dynamics of the microscopic quantum pendulum are closely related to molecular motions known as hindered rotations. We use standard probabilistic methods to predict whether this motion is weakly or strongly hindered at ambient temperature and test the prediction against experimental data for C2H6 and K2PtCl6. For the macroscopic gravitational pendulum, we examine the uncertainty in position and find, not surprisingly, that it is too small to measure physically, but is nevertheless relatively large compared to present-day limits in computation. The latter juxtaposition of computational precision with quantum uncertainty has consequences for the study of chaotic dynamics. (C) 2002 American Association of Physics Teachers.
引用
收藏
页码:525 / 531
页数:7
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