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双强激光场作用下原子蒸气中的亚多普勒吸收线宽变窄

Sub-Doppler absorption narrowing in atomic vapor at two intense laser fields.

作者信息

Krmpot Aleksandar, Mijailović Marina, Panić Bratimir, Lukić Dragan, Kovacević Aleksander, Pantelić Dejan, Jelenković Branislav

出版信息

Opt Express. 2005 Mar 7;13(5):1448-56. doi: 10.1364/opex.13.001448.

Abstract

We have experimentally studied electromagnetically induced transparency (EIT) and absorption (EIA) in hot 85Rb atomic vapor using probe and coupling light with comparable power levels. We have shown that strong-probe EIT has different linewidth and appears in fewer configurations than does usual, weak probe EIT. In V-scheme, where optical pumping and saturation are dominant mechanisms, narrow EIT is possible only when a probe is tuned to a closed transition. The width of the EIT resonance increases with laser intensity with non-linear dependence, similar to the weak-probe EIT in Lambda- scheme. The EIT in Lambda- scheme was observed when two transitions had balanced population losses. The EIA was modified for the case of a strong probe as well: in four-level N-scheme with Zeeman sublevels the EIA was observed only for a cycling transition when F'=F+1, where F and F' are the angular momenta of the 5 2S1/2 (ground) and 5 2P3/2 (excited) state hyper-fine levels, respectively. The combination of strong probe and strong coupling laser beam intensities allows observation of an absorption dip due to three-photon resonance in a four-level scheme that involves the Raman transitions via virtual level.

摘要

我们使用具有可比功率水平的探测光和耦合光,对热的85Rb原子蒸气中的电磁诱导透明(EIT)和吸收(EIA)进行了实验研究。我们已经表明,强探测EIT与通常的弱探测EIT相比,具有不同的线宽并且出现在更少的配置中。在V型方案中,光泵浦和饱和是主要机制,只有当探测光调谐到封闭跃迁时才可能出现窄EIT。EIT共振的宽度随激光强度呈非线性增加,类似于Λ型方案中的弱探测EIT。当两个跃迁具有平衡的粒子数损失时,在Λ型方案中观察到了EIT。强探测情况下的EIA也有所改变:在具有塞曼子能级的四能级N型方案中,仅当F'=F + 1时,对于循环跃迁才观察到EIA,其中F和F'分别是5 2S1/2(基态)和5 2P¾(激发态)超精细能级的角动量。强探测和强耦合激光束强度的组合允许在涉及通过虚能级的拉曼跃迁的四能级方案中观察到由于三光子共振引起的吸收凹陷。

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