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Nonparaxial self-accelerating beams in an atomic vapor with electromagnetically induced transparency

机译:具有电磁感应透明度的原子蒸气中的非傍轴自加速光束

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摘要

We theoretically and numerically investigate the nonparaxial self-accelerating beams in a Lambda-type three-level energy system of rubidium atomic vapor in the electromagnetically induced transparency (EIT) window. In the EIT window, the absorption of the atomic vapor is small, and robust nonparaxial self-accelerating beams can be generated. The reason is that the energy of the tail transfers to the main lobe, which then maintains its shape, owing to the self-healing effect. Media with large absorption would demand large energy to compensate, and the tail would be lifted too high to maintain the profile of an accelerating beam, so that self-accelerating beams cannot be obtained any longer. An atomic vapor with small absorption is the ideal medium to produce such self-accelerating beams and, in return, self-accelerating beams may inspire new ideas in the research associated with atomic vapors and atomic-like ensembles. (C) 2016 Optical Society of America
机译:我们在理论和数值上研究了电磁感应透明(EIT)窗口中Lambda型三能级of原子蒸气能系​​统中的非傍轴自加速光束。在EIT窗口中,原子蒸气的吸收很小,并且可以生成健壮的非傍轴自加速光束。原因是尾巴的能量转移到主瓣,然后由于自身修复作用而保持其形状。具有大吸收率的介质将需要大量能量来进行补偿,并且尾部将被举得太高而无法维持加速光束的轮廓,因此无法再获得自加速光束。具有低吸收率的原子蒸气是产生这种自加速光束的理想介质,因此,自加速光束可能会激发与原子蒸气和类似原子团有关的研究新思路。 (C)2016美国眼镜学会

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