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March 3, 2026Physical review. A/Physical review, A2 citationsOpen Access

Spatially localized optical excitations in a doped solid using robust broadband composite pulses

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AAnonymousNVNikolay V. VitanovTHThomas Halfmann

Key Points

  • Spatially localized optical excitation was achieved using broadband composite pulses, improving precision significantly.
  • The composite pulse sequences enable confinement well below the laser beam's diameter, enhancing excitation capabilities.
  • We assessed multiple classes of broadband composite sequences through extensive measurements and numerical simulations.
  • These findings advance high-resolution imaging and quantum technologies, indicating robust applications in optics.

Abstract

We experimentally demonstrate spatial confinement of optically driven atomic excitation by broadband composite pulses in a rare-earth ion-doped Pr 3 + : Y 2 SiO 5 crystal. The experimental data confirm that such sequences enable spatially localized excitation well below the diameter of the applied laser beam, with a substantial improvement compared to previous developments and applications of other classes of composite pulses. In particular, we derived and applied broadband composite sequences, which also work efficiently in inhomogeneously broadened media, while also maintaining robustness with regard to fluctuations of the driving laser intensity. We perform extensive measurements to assess and compare the performance of several classes of broadband composite sequences. The findings are confirmed by numerical simulations, which agree very well with the experimental data. As the concepts are also applicable to spatially confined excitations below the diffraction limit of the laser beam, the results serve as an important step towards high-resolution imaging, preparation and addressing in quantum technologies and classical applied optics.

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Cite This Study

Anonymous et al. (2026) studied this question.

synapsesocial.com/papers/69a760c8c6e9836116a2dd96https://doi.org/10.1103/481b-y9vc
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