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Uncertainty principle for angular position and angular momentum

Sonja Franke-Arnold et al 2004 New J. Phys. 6 103   doi: 10.1088/1367-2630/6/1/103  Help

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Sonja Franke-Arnold1, Stephen M Barnett1, Eric Yao2, Jonathan Leach2, Johannes Courtial2 and Miles Padgett2
1 Department of Physics, University of Strathclyde, Glasgow G4 0NG, UK
2 Department of Physics and Astronomy, Glasgow University, Glasgow G12 8QQ, UK
E-mail: e.yao@physics.gla.ac.uk

Abstract. The uncertainty principle places fundamental limits on the accuracy with which we are able to measure the values of different physical quantities (Heisenberg 1949 The Physical Principles of the Quantum Theory (New York: Dover); Robertson 1929 Phys. Rev. 34 127). This has profound effects not only on the microscopic but also on the macroscopic level of physical systems. The most familiar form of the uncertainty principle relates the uncertainties in position and linear momentum. Other manifestations include those relating uncertainty in energy to uncertainty in time duration, phase of an electromagnetic field to photon number and angular position to angular momentum (Vaccaro and Pegg 1990 J. Mod. Opt. 37 17; Barnett and Pegg 1990 Phys. Rev. A 41 3427). In this paper, we report the first observation of the last of these uncertainty relations and derive the associated states that satisfy the equality in the uncertainty relation. We confirm the form of these states by detailed measurement of the angular momentum of a light beam after passage through an appropriate angular aperture. The angular uncertainty principle applies to all physical systems and is particularly important for systems with cylindrical symmetry.

Received 14 May 2004
Published 9 August 2004

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