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Two symmetric four-wave mixing signals generated in a medium with anomalous refractive index

Published 30 May 2020 in physics.optics and physics.atom-ph | (2006.00363v1)

Abstract: We report experimental and theoretical results of two symmetrical signals of degenerate four-wave mixing generated in rubidium vapor. Both nonlinear signals are induced by two almost copropagating laser beams, with $\vec{k}{a}$ and $\vec{k}{b}$ wave-vectors, and detected simultaneously in the $2\vec{k}{a}-\vec{k}{b}$ and $2\vec{k}{b}-\vec{k}{a}$ directions. In each direction, we observe a single peak when the two beams are tuned on the closed transition ${85}$Rb$~5S_{1/2} (F=3) \rightarrow 5P_{3/2} (F=4)$. The excitation spectra reveal a small frequency separation between the two peaks, which is explained when propagation effects are taken into account. Furthermore, our theoretical analysis shows that a correct description of the frequency position of each peak is obtained only if coherent effects such as electromagnetically induced absorption are included.

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