Helicity and Angular Momentum. A Symmetry based framework for the study of Light-Matter Interactions
arXiv:1206.5563 · doi:10.1103/PhysRevA.86.042103
Abstract
We propose a new theoretical and practical framework for the study of light-matter interactions and the angular momentum of light. Our proposal is based on helicity, total angular momentum, and the use of symmetries. We compare the new framework to the current treatment, which is based on separately considering spin angular momentum and orbital angular momentum and using the transfer between the two in physical explanations. In our proposal, the fundamental problem of spin and orbital angular momentum separability is avoided, predictions are made based on the symmetries of the systems, and the practical application of the concepts is straightforward. Finally, the framework is used to show that the concept of spin to orbit transfer applied to focusing and scattering is masking two completely different physical phenomena related to the breaking of different fundamental symmetries: transverse translational symmetry in focusing and electromagnetic duality symmetry in scattering.
34 pages, 4 figures, http://link.aps.org/doi/10.1103/PhysRevA.86.042103. v4: corrected typo (loose bracket) in formulas 15 and B13, which are actually the same formulas. Replaced Fig 3a and 3b to correct wrong labels of the horizontal axis
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Cited by in corpus (59)
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- Fundamental Limits of Optical Force and Torque
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- Enhanced spin-orbit optical mirages from dual nanospheres
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