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首页> 外文期刊>Journal of Applied Physics >Performance of laser dye solutions under high signal fluxes: An analysis of signal propagation and excited‐state energy extraction in mobile and rigid media
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Performance of laser dye solutions under high signal fluxes: An analysis of signal propagation and excited‐state energy extraction in mobile and rigid media

机译:高信号通量下激光染料溶液的性能:在移动和刚性介质中的信号传播和激发态能量提取分析

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As a continuous‐wave signal builds up in an energized laser dye solution, the lifetimes for the excited state of the molecules become shorter than their orientational relaxation time. Physical consequences of the phenomomenon are considered for two extreme situations—transmission through pure mobile and pure rigid media continua, respectively. The dye is treated as a linear oscillator and spectral properties are assumed to be unchanged between the media. Two problems are examined, namely signal propagation and the extraction of energy at a point in the medium for a number of configurations of pump and signal polarizations, transverse or longitudinal excitations. Signal gradients and steady‐state conversion efficiencies are presented algebraically and graphically. A mobile medium has one of the steepest gradients, the largest energy storage, and one of the highest conversion efficiencies. Nevertheless, performance of a transversely excited, single‐pass amplifier for the commonly used configuration where pump and signal are plane polarized and have a shared polarization axis (Configuration C) shows little difference between rigid or mobile media, according to this analysis. For a rigid Configuration C, only about 21% of the dye molecules carry most of the signal load, in contrast with a mobile medium where all molecules work equally, and such a restricted distribution undergoes rapid turnover of its excited state. Twisting of the signal plane of polarization in a dye amplifier is confirmed.
机译:随着在激励的激光染料溶液中建立连续波信号,分子激发态的寿命变得比定向弛豫时间短。在两种极端情况下考虑了现象的物理后果-分别通过纯移动介质和纯刚性介质连续体进行传输。染料被视为线性振荡器,并且假定介质之间的光谱特性不变。研究了两个问题,即对于泵浦和信号极化,横向或纵向激励的多种配置,信号传播和介质中某一点的能量提取。信号梯度和稳态转换效率以代数和图形方式表示。移动介质具有最陡峭的梯度之一,最大的能量存储和最高的转换效率之一。尽管如此,根据该分析,对于泵浦和信号为平面偏振并具有共享偏振轴(配置C)的常用配置,横向激励单通放大器的性能显示出刚性介质或移动介质之间的差异很小。对于刚性构型C,只有约21%的染料分子承担大部分信号负载,而移动介质中的所有分子均能正常工作,而这种受限制的分布经历了其激发态的快速转换。确认了染料放大器中偏振信号面的扭曲。

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    《Journal of Applied Physics》 |1985年第11期|P.4916-4930|共15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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