研究目的
Demonstrating high-order vortex beams at 604 nm directly emitted from a Pr:YLF crystal laser and investigating the cavity-loss-induced gain switching mechanism between 604 and 607 nm emission.
研究成果
High-order vortex laser beams at 604 nm were directly generated from a Pr:YLF laser. A cavity-loss-induced gain switching mechanism was confirmed, allowing the 604-nm transition to have a stronger net gain than the 607-nm transition under certain conditions.
研究不足
The degradation of laser efficiencies for higher-order vortex modes due to larger hollow areas and higher diffraction losses.
1:Experimental Design and Method Selection:
Utilized a three-mirror v-type Pr:YLF cavity for controllable Gouy phase introduction and off-axis crystal rotation for high-order HG modes generation.
2:Sample Selection and Data Sources:
A cubic a-cut Pr:YLF crystal with a doping concentration of 0.3 at.% was used as the gain medium.
3:3 at.% was used as the gain medium. List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: Blue-diode-pumped system, Pr:YLF crystal, kinematic mount with motorized actuators, Fizeau interferometer, CCD camera.
4:Experimental Procedures and Operational Workflow:
Aligned the crystal for TEM00 mode, rotated for HG modes, adjusted cavity parameters for LG vortex modes, and recorded emission spectra and power.
5:Data Analysis Methods:
Spectroscopic study and rate-equation analysis to understand the gain switching process.
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