Abstract
We demonstrate sum-frequency generation between a telecom wavelength and the Rb D2 line, achieved through natural phase matching in a nonlinear whispering gallery mode resonator. Due to the strong optical field confinement and ultra high Q of the cavity, the process saturates already at sub-mW pump peak power, at least two orders of magnitude lower than in existing waveguide-based devices. The experimental data are in agreement with the nonlinear dynamics and phase matching theory based on spherical geometry. Our experimental and theoretical results point toward a new platform for manipulating the color and quantum states of light waves for applications such as atomic memory based quantum networking and logic operations with optical signals. © 2014 IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.
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Strekalov, D. V., Kowligy, A. S., Huang, Y. P., & Kumar, P. (2014). Optical sum-frequency generation in a whispering-gallery-mode resonator. New Journal of Physics, 16. https://doi.org/10.1088/1367-2630/16/5/053025
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