Frontiers in Physics (Jul 2016)

Lifetime Autler-Townes Splitting of Dressed Multi-order Fluorescence in Pr3+:YSO

  • Imran Ali,
  • Changbiao Li,
  • Abdulkhaleq Hasan,
  • Garuma Abdisa,
  • Zongchen Liu,
  • Feng Ma,
  • Yanpeng Zhang

DOI
https://doi.org/10.3389/fphy.2016.00032
Journal volume & issue
Vol. 4

Abstract

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For first time, we study primary and secondary Autler-Townes (AT) splitting of multi-order fluorescence (FL) in time domain. The AT-splitting of multi-order FL signals are controlled by changing power, detuning, and polarization of single and double dressing in a heteronuclear-like molecule system of Pr+3:YSO. The primary and secondary AT-splitting is caused by double cascaded dressing in time domain. The AT-splitting of multi-order FL in time domain is more sensitive than that of in spectral domain. Such results have potential applications in quantum communication and optical information processing on photonic chip.

Keywords