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首页> 外文期刊>The Journal of Chemical Physics >The ac Stark effect in nitric oxide induced by rapidly swept continuous wave quantum cascade lasers
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The ac Stark effect in nitric oxide induced by rapidly swept continuous wave quantum cascade lasers

机译:快速扫描连续波量子级联激光器在一氧化氮中产生的交流斯塔克效应

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摘要

A large ac Stark effect has been observed when nitric oxide, at low pressure in a long optical path (100 m) Herriot cell, is subjected to infrared radiation from a rapidly swept, continuous wave infrared quantum cascade laser. As the frequency sweep rate of the laser is increased, an emission signal induced by rapid passage occurs after the laser frequency has passed through the resonance of 1-0 R(11.5) _(32)molecular absorption line. At very high sweep rates a laser field-induced splitting of the absorptive part of the signal is observed, due to the ac Stark effect. This splitting is related to the Autler-Townes mixing of the e, f lambda doublet components of the 1-0 R(11.5) _(32) transition, which lie under the Doppler broadened envelope.
机译:当一氧化氮在长光程(100 m)Herriot电池中处于低压下,经受来自快速扫描的连续波红外量子级联激光器的红外辐射时,会观察到较大的ac Stark效应。随着激光扫频速率的增加,在激光频率通过1-0 R(11.5)_(32)分子吸收线的共振之后,会发生由快速通过引起的发射信号。由于交流斯塔克效应,在非常高的扫描速率下,观察到了激光场引起的信号吸收部分的分裂。这种分裂与1-0 R(11.5)_(32)跃迁的e,fλ双峰组分的Autler-Townes混合有关,该组分位于多普勒增宽包络下。

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