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- W1529380095 abstract "The prediction of the lifetime of optics in high power fusion lasers is a key point for mastering the facilities (Bercegol et al., 2008). The laser damage scenario is seen as occurring in two distinct steps. The first one concerns the damage occurrence due to the first optic irradiation: the initiation step (Feit et al., 1999). Afterwards, damage sites are likely to grow with successive new shots: the growth step (Norton et al., 2006 ; Negres et al., 2010). The damage growth study requires the use of large beams due to the exponential nature of the process, leading to centimetre damage sites. At the same time, damage density measurements on large optics are mainly performed off-line by raster scanning the whole component with small Gaussian beams (~1mm) (Lamaignere et al., 2007), except for a wide range of results using larger beams which permit also a comparison between procedures (DeMange et al., 2004). Tests are currently done at a given control fluence. The goal is to irradiate a known area in order to reveal all the defects which could create damage. This procedure, named rasterscan procedure, gives access to the optical damage densities (Lamaignere et al., 2007). This measurement is accurate and reproducible (Lamaignere et al., 2010). In standard tests (ISO standards, 2011), results are given in terms of damage probability. This data treatment is size dependent; on the contrary, it is important to focus the attention rather on the density of sites that damage at a given fluence." @default.
- W1529380095 created "2016-06-24" @default.
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- W1529380095 date "2012-03-07" @default.
- W1529380095 modified "2023-09-25" @default.
- W1529380095 title "Laser-Induced Damage Density Measurements of Optical Materials" @default.
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- W1529380095 doi "https://doi.org/10.5772/35515" @default.
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