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Diode-pumped alkali lasers with a gradient temperature configuration

机译:具有梯度温度配置的二极管泵浦碱激光器

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A diode-pumped alkali laser (DPAL) is one of the most promising candidates of the next-generation high-powered laser sources. Until now, a single-heater structure has been widely adopted to control the temperature of an alkali vapor cell in plenty of the DPAL studies. However, for an end-pumped DPAL using a single heater, most pump power can be absorbed by the gain media near the entrance window of a cell due to the large absorption cross section of atomic alkali. As a result, the temperature in the pumping area around the inputted window will be much higher than those in the other positions of the vapor cell. Such a large temperature gradient would bring about some negative influences on the output performance of a DPAL. Additionally, in the worst case, the inputted cell window may even be damaged, especially when the pump intensity becomes very high. To solve the problem, we put forward a new scheme by using a gradient heating process in which several heaters are simultaneously utilized to anneal an alkali vapor cell. In this technique, the temperature at the entrance window is set to be lower than that of the other side. Using this novel method, one can not only achieve a homogeneous absorption of pump energy along the cell axis, but also decrease the possibility of the window damage in the DPAL configuration. The theoretical simulation of the laser output features by use of multiple heaters has been carried out, and the optimum condition in temperature gradient is also discussed in this paper.
机译:二极管泵浦的碱激光(DPAL)是下一代高功率激光源最有前景的候选者之一。到目前为止,已经广泛采用单加热结构来控制大量DPAL研究中碱蒸气细胞的温度。然而,对于使用单个加热器的终端泵浦DPAL,由于原子碱碱的大吸收横截面,电池入口窗口附近的增益介质可以吸收大多数泵浦。结果,输入窗口周围的泵送区域中的温度远高于蒸汽电池的另一个位置的温度。这种大的温度梯度将为DPAL的输出性能带来一些负面影响。另外,在最坏的情况下,输入的单元窗口甚至可以损坏,特别是当泵强度变得非常高时。为了解决该问题,我们通过使用梯度加热过程提出了一种新方案,其中多个加热器同时用于退火碱蒸气细胞。在该技术中,入口窗口的温度设定为低于另一侧的温度。使用这种新方法,可以不仅可以沿着细胞轴实现泵能的均匀吸收,而且还降低了DPAL配置中窗口损坏的可能性。通过使用多个加热器的激光输出特征的理论模拟已经进行,并且本文还讨论了温度梯度的最佳条件。

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