共 32 条
- [1] Farley R., Dao P., Development of an intracavity-summed multiple-wavelength nd:YAG laser for a rugged, solid-state sodium lidar system, Appl. Opt, 34, pp. 4269-4273, (1995)
- [2] Son S., Song J., Kan J., Kim C., Simultaneous second harmonic generation of multiple wavelength laser outputs for medical sensing, Sensors, 11, pp. 6125-6130, (2011)
- [3] Weigl F., A generalized technique of two-wavelength, nondiffuse holographic interferometry, Appl. Opt, 10, pp. 187-192, (1971)
- [4] Abdelsalam D., Magnusson R., Kim D., Single-shot, dual-wavelength digital holography based on polarizing separation, Appl. Opt, 50, pp. 3360-3368, (2011)
- [5] Basov N., Gubin M., Nikitin V., Nikuchin A., Petrovskii V., Protsenko E., Tyurikov D., Highly-sensitive method of narrow spectral-line separations, based on the detection of frequency resonances of a 2-mode gas-laser with non-linear absorption, Izv. Akad. Nauk. SSSR Ser. Fiz, 46, pp. 1573-1583, (1982)
- [6] Zhang S., Tan Y., Li Y., Orthogonally polarized dual frequency lasers and applications in self-sensing metrology, Meas. Sci. Technol, 21, (2010)
- [7] Fei L., Zhang S., The discovery of nanometer fringes in laser self-mixing interference, Opt. Commun, 273, pp. 226-230, (2007)
- [8] Zhang S., Wang S., Lian G., Wang Z., Yu H., Zhang H., High-efficiency 261-nm continuous-wave laser by single-blue-laser-diode-pumped Pr<sup>3+</sup>:LiYF<sub>4</sub> crystal, Opt. Laser Technol, 169, (2024)
- [9] Chen Y., Tsai S., Diode-pumped Q-switched laser with intracavity sum frequency mixing in periodically poled KTP, Appl. Phys. B, 79, pp. 207-210, (2004)
- [10] Zhao P., Ragam S., Ding Y., Zotova I., Power scalability and frequency agility of compact terahertz source based on frequency mixing from solid-state lasers, Appl. Phys. Lett, 98, (2011)