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- W768252384 abstract "Abstract The plasma scald damage is the most typical laser damage morphology presented on the laser conditioned HfO 2 /SiO 2 mirrors. In order to provide guidance for defining the acceptance quantitative specification for the plasma scald on these laser conditioned mirrors, the simulations about the downstream beam modulations of the plasma scald are investigated based on its damage characteristics and the diffraction theory. The single plasma scald with the typical size, induced by the laser conditioning, can hardly cause damage to the downstream optics and its influence on the beam contrast can be reduced easily with the increment of the propagation distance. Those with small size and large depth, or those with big size and shallow depth can also hardly induce downstream damage, but the beam contrasts become worse with the increment of the size of the concave part as well as its depth. For a maximum plasma scald observed on the laser conditioned mirror, the intensity modulation peak is close to 1.3 and the beam contrast reaches to 25% even at 2 m downstream from the mirror. For multi plasma scalds, more diffraction rings show up in the downstream beam and further decrease the overall uniformity of the beam. The uniformity of the beam gets worse as the number of the plasma scald is increased. When the density of the plasma scald with the typical size in these 1ωHfO 2 /SiO 2 mirrors reaches 20 per 1 cm 2 , the beam contrast is less than 6%." @default.
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- W768252384 date "2015-11-01" @default.
- W768252384 modified "2023-09-26" @default.
- W768252384 title "Modulations of the plasma scald on the downstream beam" @default.
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- W768252384 doi "https://doi.org/10.1016/j.optcom.2015.06.076" @default.
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