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Growth and Optical Characterization of Cr3+:YAB and Cr3+:YGAB Crystal for New Tunable and Self-Frequency Doubling Laser
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We have grown Cr3+-doped huntite-borate crystals Cr3+:YAB and Cr3+:YGAB by the top-seeded solution growth (TSSG) method. These crystals have a broad fluorescence ranging from the red to near-IR spectral region, and their lifetimes were measured as 170 µs and 87 µs, respectively. The emission cross sections are estimated to be 0.8 ×10-20and 1.6 ×10-20cm2, respectively. The vibronic levels of their ground state were estimated to be ≈1400 cm-1, so they can provide a four-level system. The optical gain of Cr3+:YAB crystal was measured in the range from 744 nm to 852.5 nm. The maximum single-pass gain was 1.9 at 830 nm. Second harmonic generation in the UV region (375 nm) was obtained by a Cr3+:YAB crystal with 1.5 times higher conversion efficiency compared with LBO crystal. Consequently Cr3+:YAB crystal and Cr3+:YGAB crystal have potential as new self-frequency doubling laser materials with tunability.
Title: Growth and Optical Characterization of Cr3+:YAB and Cr3+:YGAB Crystal for New Tunable and Self-Frequency Doubling Laser
Description:
We have grown Cr3+-doped huntite-borate crystals Cr3+:YAB and Cr3+:YGAB by the top-seeded solution growth (TSSG) method.
These crystals have a broad fluorescence ranging from the red to near-IR spectral region, and their lifetimes were measured as 170 µs and 87 µs, respectively.
The emission cross sections are estimated to be 0.
8 ×10-20and 1.
6 ×10-20cm2, respectively.
The vibronic levels of their ground state were estimated to be ≈1400 cm-1, so they can provide a four-level system.
The optical gain of Cr3+:YAB crystal was measured in the range from 744 nm to 852.
5 nm.
The maximum single-pass gain was 1.
9 at 830 nm.
Second harmonic generation in the UV region (375 nm) was obtained by a Cr3+:YAB crystal with 1.
5 times higher conversion efficiency compared with LBO crystal.
Consequently Cr3+:YAB crystal and Cr3+:YGAB crystal have potential as new self-frequency doubling laser materials with tunability.
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