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Enhanced atomic Kerr nonlinearity in bright coherent states

机译:明亮相干态下增强的原子Kerr非线性

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摘要

We show that long-lived bright Zeeman coherence that is responsible for absorption enhancement and steep anomalous dispersion in an atomic medium gives rise to a giant nonlinearity of the atomic susceptibility, in a similar manner to the dark coherence responsible for the well-known electromagnetically induced transparency. The intensity dependent refractive index of Cs vapour with a ground state Zeeman coherence in the vicinity of the D-2 resonance line has been measured at low light intensity. The Kerr nonlinearity in the bright coherent state (n(2) approximate to 1.0 x 10(-6) cm(2) mW(-1)) is higher than that in a dark state under the same experimental conditions. Higher order nonlinear components of the refractive index have also been estimated for both coherent states.
机译:我们表明,寿命长的明亮塞曼相干(负责在原子介质中的吸收增强和陡峭的异常弥散)会导致原子磁化率的巨大非线性,类似于导致众所周知的电磁感应的黑暗相干的方式透明度。已经在低光强度下测量了在D-2共振线附近具有基态塞曼相干的Cs蒸气的强度依赖性折射率。在相同的实验条件下,亮相干态(n(2)近似于1.0 x 10(-6)cm(2)mW(-1))的Kerr非线性高于暗态。对于两种相干态,也已经估计出折射率的高阶非线性分量。

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