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On Exchange of Orbital Angular Momentum Between Twisted Photons and Atomic Electrons

Quantum Physics 2013-02-06 v1 Atomic Physics Optics

Abstract

We obtain an expression for the matrix element for a twisted (Laguerre-Gaussian profile) photon scattering from a hydrogen atom. We consider photons incoming with an orbital angular momentum (OAM) of \ell \hbar, carried by a factor of eiϕe^{i \ell \phi} not present in a plane-wave or pure Gaussian profile beam. The nature of the transfer of +2+2\ell units of OAM from the photon to the azimuthal atomic quantum number of the atom is investigated. We obtain simple formulae for these OAM flip transitions for elastic forward scattering of twisted photons when the photon wavelength λ\lambda is large compared with the atomic target size aa, and small compared the Rayleigh range zRz_R, which characterizes the collimation length of the twisted photon beam.

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Cite

@article{arxiv.1206.6935,
  title  = {On Exchange of Orbital Angular Momentum Between Twisted Photons and Atomic Electrons},
  author = {Basil S. Davis and L. Kaplan and J. H. McGuire},
  journal= {arXiv preprint arXiv:1206.6935},
  year   = {2013}
}

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16 pages