Publication | Open Access
Electromagnetically Induced Magnetochiral Anisotropy in a Resonant Medium
54
Citations
18
References
2005
Year
EngineeringNegative-index MetamaterialMagnetic ResonanceCoherent FieldsElectromagnetic MetamaterialsMagnetismLarge Chiral EffectOptical PropertiesMagnetohydrodynamicsBiophysicsNanophotonicsAnisotropic MaterialElectromagnetic WavePhotonicsPhysicsAtomic Rb VaporsInduced Magnetochiral AnisotropyMagnetoelasticityApplied PhysicsDynamic MetamaterialsMedicine
Chirality has been extensively studied for well over a century, and its potential applications range from optics to chemistry, medicine, and biology. Ingenious experiments have been designed to measure this naturally small effect. Here we discuss the possibility of producing a medium having a large chiral effect by using the ideas of coherent control. The coherent fields resonant with appropriate transitions in atomic or molecular systems can be used to manipulate the optical properties of a medium. We demonstrate experimentally very large magnetochiral anisotropy by using electromagnetic fields in atomic Rb vapors.
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