Laser-Energiespeicherkristall
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What are the dimensions of the laser crystal in innoslab lasers?
The characteristic dimensions of the laser crystal in Innoslab lasers with typical sizes of the Yb slabs of 1 × 10 × 10 mm 3 and up to 1 × 25 × 10 mm 3 for booster amplifiers range between the ones of disk and fiber lasers.
What is a laser crystal?
The crystal can be, e.g., a thin coplanar plate, with transverse dimensions (perpendicular to the laser beam) and a thickness of a few millimeters. It may be oriented for near perpendicular incidence of the laser beam, or at Brewster's angle. It can be fixed in some solid mount which also acts as a heat sink.
Which crystal is best for thin-disk lasers?
LuAG is similar to YAG, but has better thermal properties when doped. Sesquioxides like Lu 2 O 3 may become an interesting alternative, when issues concerning crystal quality are solved. Hence, the first crystal used for thin-disk lasers is still among the best in terms of power scaling.
What are the experimental parameters for laser trapping induced crystallization?
Critical experimental parameters for laser trapping-induced crystallization are the focal point of the laser, the laser power, the solvent used, and the solute concentration. 10. Polymorph control was seen with LTIC by changing the polarization of the laser beam. 11.
Can laser crystals be optimized for thermal management?
However, the laser crystals, which are limited by thermal effects, can be optimized for thermal management by thermal bonding and concave end-face processing to increase laser output power. (25) Table 1. Performance Parameters of the Er:LuYAP and Er:YAP Crystals 4. Conclusions
How stable is the laser Er luyap Crystal?
In continuous mode, the laser average output power is 723 mW, corresponding to a fluctuation rate of 1.8%. In pulse mode, the laser average output power is 1006 mW, corresponding to a fluctuation rate of 3.2%. It indicates that the output lasers have high stability. Figure 12. Laser stability of the Er:LuYAP crystal.