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In ultra-intense ultrafast laser-matter interaction, the interplay of laser-induced oscillating space-charge fields with laser E- and B-fields can strongly affect whether the interaction is relativistic or not; with increasing intensities, relativistic character may saturate.
This paper deals with the microstructure of the generated crystals in borate glass by femtosecond laser irradiation, Raman spectroscopy was used to study the distribution of the two phases of barium metaborate crystals produced.
We consider ultrashort and ultrastrong laser pulses applied to a gas of aligned heteronuclear molecules, where nuclei of different mass will acquire different velocities and collide, possibly producing fusion or emitting subattosecond bursts of X-rays.
Tritium locking in silica films is demonstrated using a combination of high-pressure tritium loading and 248-nm KrF laser irradiation. This work offers a safe and simple approach to integrate radioisotope micro-power source on-chip for micro-electronic applications.
We reveal key factors determining laser-induced damage resistance in KDP/DKDP by measuring the damage initiation events per unit volume as a function of the laser fluence in regions of crystals grown with varied growth parameters.
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