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The Application of Cryogenic Laser Physics to the Development of High Average Power Ultra-Short Pulse Lasers

机译:低温激光物理学在高平均功率超短脉冲激光器发展中的应用

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Ultrafast laser physics continues to advance at a rapid pace, driven primarily by the development of more powerful and sophisticated diode-pumping sources, the development of new laser materials, and new laser and amplification approaches such as optical parametric chirped-pulse amplification. The rapid development of high average power cryogenic laser sources seems likely to play a crucial role in realizing the long-sought goal of powerful ultrafast sources that offer concomitant high peak and average powers. In this paper, we review the optical, thermal, thermo-optic and laser parameters important to cryogenic laser technology, recently achieved laser and laser materials progress, the progression of cryogenic laser technology, discuss the importance of cryogenic laser technology in ultrafast laser science, and what advances are likely to be achieved in the near-future.
机译:超快激光物理学继续以迅猛的速度发展,这主要是由更强大,更复杂的二极管泵浦光源的开发,新型激光材料的开发以及新型激光和放大方法(如光学参量chi脉冲放大)驱动的。高平均功率深冷激光源的快速发展似乎可能在实现强大的超快光源(提供相应的高峰值和平均功率)的长期目标中发挥关键作用。在本文中,我们回顾了对低温激光技术至关重要的光学,热,热光和激光参数,最近在激光和激光材料方面取得的进展,低温激光技术的发展,讨论了低温激光技术在超快激光科学中的重要性,在不久的将来可能取得什么进展。

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