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Investigations on fibers for high-peak power pulsed Nd:YAG-lasers for laser detonator

机译:高峰值功率脉冲Nd:YAG激光雷管用光纤的研究

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For laser detonator application, high-peak power pulsed Nd:YAG laser is transmitted through all-silica optical fiber. The transmission properties of step-index fibers are investigated, using a high-peak power pulsed Nd: YAG rod laser with beyond 1MW power and Q-switch mode. The fibers are step-index multimode fibers with 400 or 600 μm core diameters, 440 or 660 μm cladding diameters. The power delivery characteristics were studied by theory and experiments. The results show that the fiber core diameter, NA, length and so on affect the transmission efficiency for high power laser. When the laser power is beyond a certain threshold, the SRS and SBS will be serious; the quantity of fiber end-face limits to the raising of laser power passing through fibers; the zero-probability damage threshold is calculated according to ISO/DIS standard 11254-1.2, which is 58.6J/cm~2. Energy distribution of output beam from fibers will be uniform. Even the fiber end-face was partly damaged, laser power is still deliverable, and the transmission efficiency is related to the fiber damage grade.
机译:对于激光雷管应用,高峰值功率脉冲Nd:YAG激光通过全石英光纤传输。使用具有超过1MW功率和Q开关模式的高峰值功率脉冲Nd:YAG棒状激光器研究了阶跃折射率光纤的传输特性。光纤是纤芯直径为400或600μm,包层直径为440或660μm的阶跃多模光纤。通过理论和实验研究了功率传递特性。结果表明,纤芯直径,NA,长度等影响大功率激光的传输效率。当激光功率超过一定阈值时,SRS和SBS将很严重。光纤端面的数量限制了通过光纤的激光功率的提高;零概率损坏阈值是根据ISO / DIS标准11254-1.2计算的,即58.6J / cm〜2。光纤输出光束的能量分布将是均匀的。即使光纤端面被部分损坏,激光功率仍可传递,并且传输效率与光纤损坏等级有关。

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