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Laser-induced modifications in fused silica up to damage initiation caused by multiple UV nanosecond pulses

机译:激光诱导的熔融石英改性,直至多个紫外线纳秒脉冲引起的损伤引发

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Fatigue effects in fused silica have been largely studied in the past years, as this phenomenon is directly linked to the lifetime of high power photonic materials. Indeed, in the UV regime, we observe a decrease of the LIDT when the number of laser shots increases and this has been attributed to laser-induced material modifications. Under 266 nm laser irradiation, with nanosecond pulses of constant fluence, we observed that the photoluminescence is modified until damage occurs. High-OH fused silicas like Suprasil®, 'UV fused silica'' or Herasil® show NBOHC (Non-Bridging Oxygen Hole Center) luminescence at 664 nm (1.87 eV) whereas low-OH fused silica like Infrasil shows ODC (Oxygen-Deficient Center) luminescence at 404 nm (3.07 eV). We found that the laser-induced density of NBOHCs increased until bulk damage occurred while the ODC's density decreased. We propose a new representation of the experimental S-on-1 breakdown data which allows predicting the occurrence of material breakdown consuming fewer sample surface and saving time compared to the classic representation N_d (Number of shots before damage) versus F (Fluence). The link between LIF and the modifications leading to breakdown is however modified if a break is used during the irradiation.
机译:近年来,熔融石英中的疲劳效应已得到大量研究,因为这种现象与高功率光子材料的寿命直接相关。确实,在紫外线下,当激光发射的数量增加时,我们观察到LIDT的减少,这归因于激光诱导的材料改性。在266 nm激光照射下,以恒定能量密度的纳秒脉冲,我们观察到光致发光被修饰直到发生损伤。高OH熔融石英,如Suprasil®,``UV熔融石英''或Herasil®在664 nm(1.87 eV)处显示NBOHC(非桥接氧孔中心)发光,而低Infrasil熔融硅,例如Infrasil,则显示ODC(缺氧)中心)在404 nm(3.07 eV)处发光。我们发现,激光诱导的NBOHCs密度增加,直到发生整体破坏,而ODC的密度降低。我们提出了一种实验性S-on-1击穿数据的新表示形式,与经典表示形式N_d(损坏前的击发数量)对比F(Fluence)相比,它可以预测消耗较少样品表面并节省时间的材料击穿的发生。但是,如果在辐照期间使用了中断,则会修改LIF与导致故障的修改之间的联系。

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