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Stimulated Raman-induced beam focusing. | LitMetric

Stimulated Raman-induced beam focusing.

Opt Express

Published: July 2024

AI Article Synopsis

  • Stimulated Raman scattering involves a pump and a Stokes beam, resulting in Raman loss for the pump and gain for the Stokes, with applications in spectroscopy and bioimaging.
  • Recent advancements focus on super-resolution Raman microscopy using specially shaped beams, which significantly alter their amplitude and phase through stimulated Raman processes.
  • The study demonstrates how the intensity distributions of these beams are influenced by multiple Laguerre-Gauss modes, while highlighting the limitations of super-resolution imaging compared to fluorescence microscopy, which has no inherent spatial resolution limits.

Article Abstract

Stimulated Raman scattering, employing a pump and a Stokes beam, exhibits itself through both the Raman loss observed in the pump beam and the Raman gain in the Stokes beam. This phenomenon finds application in spectroscopy for chemical analyses and microscopy for label-free bioimaging studies. Recent efforts have been made to implement super-resolution Raman microscopy using a doughnut-shaped pump, Stokes, or depletion beam. In this study, it is shown that the amplitude and phase of the pump or Stokes beam undergo significant modulation through the stimulated Raman process when they are configured as one of the higher-order Laguerre-Gauss modes, achieved using appropriate spiral phase plates or spatial light modulators. The resulting intensity distributions of the pump and Stokes beams are determined by a superposition of multiple Laguerre-Gauss modes that are coupled through nonlinear Raman gain and loss processes. Calculation results are used to elucidate the limitations associated with super-resolution coherent Raman imaging with a toroidal pump or Stokes beam. This stands in contrast with the stimulated emission depletion fluorescence microscopy technique, which has no fundamental limit in the spatial resolution enhancement.

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Source
http://dx.doi.org/10.1364/OE.523404DOI Listing

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