Nonlinear properties of electromagnetically induced transparency in rubidium vapor
Dmitry Strekalov, Andrey B. Matsko, Lute Maleki
Abstract
Dmitry Strekalov, Andrey B. Matsko, Lute Maleki
Abstract
Nonlinear properties of electromagnetically induced transparency (EIT) with respect to a weak probe light are studied. We observe EIT in a rubidium vapor, measure the slow light group velocity and the EIT resonance width, and find that those parameters show a strong dependence on the probe power. We theoretically study the influence of the EIT probe dependence on the performance of the EIT-based optical delay lines and magnetometers.
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Nonlinear properties of electromagnetically induced transparency (EIT) with respect to a weak probe light are studied. We observe EIT in a rubidium vapor, measure the slow light group velocity and the EIT resonance width, and find that those parameters show a strong dependence on the probe power. We theoretically study the influence of the EIT probe dependence on the performance of the EIT-based optical delay lines and magnetometers.
Key concepts: Electromagnetically induced transparency, Rubidium, Nonlinear system, Slow light, Magnetometer, Resonance (particle physics), Physics, Atomic physics