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Transverse azimuthal dephasing of vortex spin wave in a hot atomic gas

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arxiv 1607.07689 v1 pith:LXC5PVA5 submitted 2016-07-26 quant-ph physics.atom-ph

Transverse azimuthal dephasing of vortex spin wave in a hot atomic gas

classification quant-ph physics.atom-ph
keywords dephasingspinwaveazimuthalatomicmanytransversefields
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Optical fields with orbital angular momentum (OAM) interact with medium have many remarkable properties with its unique azimuthal phase, showing many potential applications in high capacity information processing, high precision measurement etc. The dephasing mechanics of optical fields with OAM in an interface between light and matter plays a vital role in many areas of physics. In this work, we study the transverse azimuthal dephasing of OAM spin wave in a hot atomic gas via OAM storage. The transverse azimuthal phase difference between the control and probe beams is mapped onto the spin wave, which essentially results in dephasing of atomic spin wave. The dephasing of OAM spin wave can be controlled by the parameters of OAM topological charge and beam waist. Our results are helpful for studying OAM light interaction with matter, maybe hold a promise in OAM-based quantum information processing.

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