2004Physical Review AOpen access

Enhancement of field generation via maximal atomic coherence prepared by fast adiabatic passage in Rb vapor

Vladimir A. Sautenkov, Chengxiang Ye, Yuri V. Rostovtsev, George R. Welch, Marlan O. Scully

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Abstract

We have experimentally demonstrated the enhancement of coherent Raman scattering in $\mathrm{Rb}$ atomic vapor by exciting maximal atomic coherence with fractional stimulated Raman adiabatic passage. Experimental results are in good agreement with numerical simulations. The results support the possibility of increasing the sensitivity of coherent anti-Stokes Raman spectroscopy by preparing maximal atomic or molecular coherence using short pulses.

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We have experimentally demonstrated the enhancement of coherent Raman scattering in $\mathrm{Rb}$ atomic vapor by exciting maximal atomic coherence with fractional stimulated Raman adiabatic passage. Experimental results are in good agreement with numerical simulations. The results support the possibility of increasing the sensitivity of coherent anti-Stokes Raman spectroscopy by preparing maximal atomic or molecular coherence using short pulses.

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Available abstract

We have experimentally demonstrated the enhancement of coherent Raman scattering in $\mathrm{Rb}$ atomic vapor by exciting maximal atomic coherence with fractional stimulated Raman adiabatic passage. Experimental results are in good agreement with numerical simulations. The results support the possibility of increasing the sensitivity of coherent anti-Stokes Raman spectroscopy by preparing maximal atomic or molecular coherence using short pulses.

Key concepts: Adiabatic process, Raman spectroscopy, Coherence (philosophical gambling strategy), Stimulated Raman adiabatic passage, Raman scattering, Sensitivity (control systems), Field (mathematics), Physics

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