Mapping of the optical frequency comb to the atom-velocity comb. Ban, T., Aumiler, D., Skenderović, H., & Pichler, G. Physical Review A, 73(4):043407, 4, 2006. Website abstract bibtex A mode-locked femtosecond laser is used to physically map the laser$\$nfrequency comb into the velocity comb of the excited Rb atoms at$\$nroom temperature. Upon resonant excitation by discrete optical frequencies$\$nthe velocity distribution of the excited Rb atoms shows comblike$\$nstructure. Simultaneously, velocity-selective population transfer$\$noccurs between ground-state hyperfine levels. Both facts are observed$\$nby modified direct frequency comb spectroscopy and verified by a$\$ndetailed density matrix treatment of the multilevel system in resonant$\$nfield.
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abstract = {A mode-locked femtosecond laser is used to physically map the laser$\$nfrequency comb into the velocity comb of the excited Rb atoms at$\$nroom temperature. Upon resonant excitation by discrete optical frequencies$\$nthe velocity distribution of the excited Rb atoms shows comblike$\$nstructure. Simultaneously, velocity-selective population transfer$\$noccurs between ground-state hyperfine levels. Both facts are observed$\$nby modified direct frequency comb spectroscopy and verified by a$\$ndetailed density matrix treatment of the multilevel system in resonant$\$nfield.},
bibtype = {article},
author = {Ban, Ticijana and Aumiler, Damir and Skenderović, Hrvoje and Pichler, Goran},
journal = {Physical Review A},
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