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An advanced kinetic model of electron‐beam‐excited KrF lasers including the vibrational relaxation in KrF*(B) and collisional mixing of KrF*(B,C)

机译:电子束激发KrF激光器的高级动力学模型,包括KrF *(B)的振动弛豫和KrF *(B,C)的碰撞混合

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Computer models developed so far on electron‐beam‐excited KrF(B–X, 248 nm) lasers that include the vibrational relaxation process in the upper lasing B level at the finite rate could not predict the high intrinsic laser efficiency which was experimentally reported. This is attributed to the reduction of the laser extraction efficiency. We have developed a four‐level KrF laser model that includes the vibrational relaxation process and also the collisional mixing of the KrF*(B) and the KrF*(C) levels. The collisional quenching rates for KrF*(B,C) that we used and the vibrational relaxation rate were carefully estimated by using the effective spontaneous lifetimes for KrF*(B,C). As a result, the model prediction was in quite good agreement with many experimental results for a saturation behavior of KrF*(B–X) fluorescence, for small‐signal gains, for small‐signal absorptions, and for intrinsic efficiencies. Estimated rate constants in this model for the vibrational relaxation and the KrF*(B,C) mixing are 4×10-11 and 5×10-10 cm3/s, respectively, for a two‐body collision rate with argon gas.
机译:迄今为止,在电子束激发的KrF(BX,248 nm)激光器上开发的计算机模型,其中包括以有限速率在上激光B级中的振动弛豫过程,无法预测实验报告的高固有激光效率。这归因于激光提取效率的降低。我们开发了一种四级KrF激光模型,该模型包括振动弛豫过程以及KrF *(B)和KrF *(C)级的碰撞混合。通过使用KrF *(B,C)的有效自发寿命,仔细估算了我们使用的KrF *(B,C)的碰撞猝灭率和振动弛豫率。结果,对于KrF *(B–X)荧光的饱和行为,小信号增益,小信号吸收以及固有效率,模型预测与许多实验结果非常吻合。对于氩气的两体碰撞速率,该模型中的振动弛豫和KrF *(B,C)混合的估计速率常数分别为4×10-11和5×10-10 cm3 / s。

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    《Journal of Applied Physics》 |1985年第9期|P.4309-4322|共14页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 入库时间 2022-08-17 13:15:46

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