Er:YAP
Emission and excitation spectra of Er-doped YAP crystals reveal a broad emission band in the eye-safe region, with peaks around 1545 and 1608 nm. Pump bands are suitable for common 800-nm and 970-nm diode lasers, suggesting YAP as a candidate crystalline host for diode-pumped laser in the 1.5-μm eye-safe regime.
Yttrium aluminum perovskite (YAP) is expected to be a suitable host material for efficient laser emission owing to higher thermal conductivity (~13.3 W m-1 K-1), good mechanical properties, and lower photon energy compared to YAG, Y2O3, and Lu2O3).
Er: YAP exhibits a large emission cross-section in 3 μm, three times larger than Er: YAG. Highly doped Er: YAP can emit a 2.73 µm wavelength laser, and lowly doped Er: YAP crystal emits a 1.66 µm laser. Moreover, Er: YAP is one of the most promising laser materials and can provide a high-power mid-IR coherent beam.
Features of Er:YAP Crystals:
- Higher thermal conductivity
- Lower phonon energy
- Good mechanical properties
- Abundant energy level structure
- High doping concentration
Physical and Chemical Properties
Chemical Formula | Er:YAlO3 |
Crystal Structure | Rhombic Crystals-Pbnm |
Molecular Mass | 163.884 |
Shape | Translucent Crystalline Solid |
Direction | b axis-Pbnm |
Melting Point | 1870 °C |
Density | 5.35 g/cm3 |
Specific Heat Capacity | 0.557 J/g·K |
Thermal Conductivity | 11.7 W/m·K (a-axis), 10.0 W/m·K (b-axis), 13.3 W/m·K (c-axis) |
Coefficient of Thermal Expansion | 2.32 x 10-6 K-1 (a-axis), 8.08 x 10-6 K-1 (b-axis), 8.7 x 10-6 K-1 (c-axis) |
Precise Quality | 163.872 g/mol |
Single Isotope Mass | 163.872 g/mol |
Optical and Spectral Properties
Laser Transition | 4S3/2→4I9/2 | 4I11/2→4I13/2 |
Laser Wavelength | 1.66 µm | 2.73 µm |
Pump Belt | 0.6-0.8 µm | 1.53 µm |
Emission Cross Section | 3 μm | |
Refractive Index | 1.94-1.97 (@ 632.8 nm) |
Absorption and Emission Spectra
References
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[2] Cong Q , D Sun, Luo J , et al. 27 μm dual-wavelength laser performance of LD end-pumped Er:YAP crystal[J]. Optics Express, 2018, 26(22):28421. |
[3] Hiroki, Kawase, Ryo, et al. 2.92-µm high-efficiency continuous-wave laser operation of diode-pumped Er:YAP crystal at room temperature.[J]. Optics Express, 2019. |
[4] Yongjun, Dong, Jun, et al. Color centers in gamma-irradiated YAP crystals grown by the Czochralski method[J]. Physica Status Solidi, 2007. |
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[9] Yao W , Uehara H , Kawase H , et al. Highly efficient Er:YAP laser with 6.9 W of output power at 2920 nm[J]. Optics Express, 2020. |
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[14] Yuchong, Ding, and,等. Near-infrared emission bands of Er3+-doped YAP and LSO crystals[J]. Journal of Luminescence, 2011. |
[15] Kawase H , Uehara H , Chen H , et al. Passively Q-switched 2.9 μm Er:YAP single crystal laser using graphene saturable absorber[J]. Applied Physics Express, 2019, 12(10):102006-. |
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[17] Yao B Q , Liu X L , Yu L X , et al. Resonantly pumped continuous wave Er:YAP laser[J]. Laser Physics, 2012, 22(4):671-672. |
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[25] Arutiunian S M , Kostanian R B , Petrosian A G , et al. A YAlO3:Er(3+)-crystal laser[J]. Kvantovaia Elektronika Moscow, 1987. |
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