paper

Comparison of collimated blue light generation in Rb atoms via the D and D lines

arXiv:1802.07305 · doi:10.1364/JOSAB.35.001133

Abstract

We experimentally studied the characteristics of the collimated blue light (CBL) produced in Rb vapor by two resonant laser fields exciting atoms into the state, using either the or the intermediate state. We compared the CBL output at different values of frequency detunings, powers, and polarizations of the pump lasers in these two cases, and confirmed the observed trends using a simple theoretical model. We also demonstrated that the addition of the repump laser, preventing the accumulation of atomic population in the uncoupled hyperfine ground state, resulted in nearly an order of magnitude increase in CBL power output. Overall, we found that the excitation pathway results in stronger CBL generation, as we detected up to W using two pumps of the same linear polarization. The optimum CBL output for the excitation pathway required the two pump lasers to have the same circular polarization, but resulted only in a maximum CBL power of ~nW.

7 pages, 11 figures