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Ultrastable Bonding of glass with femtosecond laser bursts

机译:用飞秒激光爆发的玻璃的无限粘接

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We report on the welding of fused silica with bursts of ultrashort laser pulses. The bursts consist of ultrashort laser pulses with a repetition rate of 9.4 MHz. However, the time between the laser bursts is about 10 μs, which reduces the maximal temperature rise. Micrographs and simulations show that the molten structures are enlarged while using laser bursts. In addition, the usage of bursts instead of continuous pulse trains reduces the laser induced stress. By optimizing the burst frequency and repetition rate we were able to achieve a breaking resistance of up to 96% of the bulk material, which is significantly higher than in conventional high repetition rate laser bonding.
机译:我们报告了熔融二氧化硅的焊接,具有超短激光脉冲的爆发。突发组成的超短激光脉冲,重复率为9.4 MHz。然而,激光突发之间的时间约为10μs,这降低了最大温度升高。显微照片和模拟表明,使用激光突发时熔融结构被扩大。另外,使用突发而不是连续脉冲列机的用法降低了激光诱导的应力。通过优化突发频率和重复率,我们能够实现高达96%的散装材料的断裂电阻,这显着高于传统的高重复率激光粘合。

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