Wavelength Tunable Passively Q-Switched Alexandrite Laser with Direct Diode-Pumping at 635 nm
Ufuk Parali, Gabrielle Thomas, Ara Minassian, Xin Sheng, Michael J. Damzen
2017
Abstract
We report on a wavelength tunable passively Q-switched Alexandrite laser directly red-diode-pumped at 635 nm. Passive Q-switching was achieved with a semiconductor saturable absorber mirror (SESAM) and wavelength tuning with a birefringent tuner. The pulse repetiton rate was variable on the pump power and wavelength and a maximum 27 kHz rate was achieved in fundamental TEM00 mode. The maximum average output power obtained was 41 mW. The Q-switched wavelength tuning band was studied between 740 nm and 755 nm. To the best of our knowledge, this is the first time that tunable TEM00 passive Q-switched operation of a diode-pumped Alexandrite laser has been achieved. The results obtained in this study can be significantly further optimised for performance. A new cavity configuration for this optimisation is described. Future work is expected to lead to the development of higher power, more efficient tunable passive Q-switched (and potentially passive mode-locked) diode-pumped Alexandrite laser sources in the near-infrared band and also ultraviolet region through frequency conversion.
References
- Damzen, M.J., Thomas, G.M., Teppitaksak, A., Minassian, A., 2014. Progress in diode-pumped Alexandrite lasers as a new resource for future space lidar missions. In ICSO 2014, International Conference on Space Optics.
- Teppitaksak, A., Minassian, A., Thomas, G.M., Damzen, M.J., 2014. High efficiency >26 W diode end-pumped Alexandrite laser. In Vol. 22, No.13, Optics Express. OSA.
- Koechner, W., Bass, M., 2003. Solid-State Lasers: Graduate Text, Springer-Verlag. New York.
- Ghanbari, S., Akbari, R., Major, A., 2016. Femtosecond Kerr-lens mode-locked Alexandrite laser. In Vol. 24, No. 13, Optics Express. OSA.
- Eitel, J.U.H., Vierling, L.A., Litvak, M.E., Long. D.S., 2011. Broadband, red-edge information from satellites improves early stress detection in a New Mexico conifer woodland. In 115, 3640-3636, Remote Sensing of the Environment.
- Lu, T., Li, H., 2016. Atmospheric turbulence induced synthetic aperture lidar phase error compensartion. In 381, 214-221, Optics Communications. ELSEVIER.
- Pelon, J., Megie, G., Loth, C., Flamant, P., 1986.Narrow bandwidth Q-switch alexandrite laser for atmospheric applications. In Vol. 59, Issue 3, 213-218, Optics Communications. ELSEVIER.
- Milton, M.J.T., Gardiner, T.D., Molero, F., Galech, J., 1997. Injection seeded optical parametric oscillator for range-resolved DIAL measurements of atmospheric methane. In 142, 153-160, Optics Communications. ELSEVIER.
- Teppitaksak, Thomas, G.M., Damzen, M.J., 2015. Investigation of a versatile pulsed laser source based on a diode seed and ultra-high gain bounce geometry amplifiers. In Vol. 23, No. 9, Optics Express. OSA.
- Ghanbari, S., Major, A., 2016. High power continuouswave Alexandrite laser with green pump. In 26, 075001, Laser Physics. IOP PUBLISHING.
- Beyatli, E., Baali, I., Sumpf, B., Erbert, G., Leitenstorfer, A., Sennaroglu, A., Demirbas, U., 2013. Tapered diode-pumped continuous-wave alexandrite laser. In Vol. 30, No. 12, J. Opt. Soc. Am. B. OSA.
- Demirbas, U., Li, D., Birge, J.R., Sennaroglu, A., Petrich, G.S., Kolodziejski, A., Kartner, F.X., Fujimoto, J.G., 2009. Low-cost, single-mode diode-pumped Cr:Colquiriite lasers. In Vol.17, No. 16, Optics Express. OSA.
- Sennaroglu, A., Kaertner, F.X., Fujimoto, J.G., 2007. Low-threshold, room-temperature femtosecond Cr4+:forsterite laser. In Vol. 15, No. 20, Optics Express. OSA.
- Loiko, P., Major, A., 2016. Dispersive properties of alexandrite and beryllium hexaaluminate crystals. In Vol. 6, No. 7, Optics Express. OSA.
- Walling, J.C., Heller, D.F., Samelson, H.,Harter, D.J., Pete, J.A., Morris, R.C., 1985. Tunable Alexandrite lasers: Development and Performance. In Vol. QE21, No. 10, J. Quantum Electronics. IEEE.
- Sam, C.L., Walling, J.C., Jenssen, H.P., Morris, R.C., O'Dell, E.W., 1980. Characteristics of alexandrite lasers in Q-switched and tuned operations. In Vol.247, 130-136, Advances in Laser Eng and Appl. SPIE.
Paper Citation
in Harvard Style
Parali U., Thomas G., Minassian A., Sheng X. and Damzen M. (2017). Wavelength Tunable Passively Q-Switched Alexandrite Laser with Direct Diode-Pumping at 635 nm . In Proceedings of the 5th International Conference on Photonics, Optics and Laser Technology - Volume 1: PHOTOPTICS, ISBN 978-989-758-223-3, pages 82-89. DOI: 10.5220/0006155500820089
in Bibtex Style
@conference{photoptics17,
author={Ufuk Parali and Gabrielle Thomas and Ara Minassian and Xin Sheng and Michael J. Damzen},
title={Wavelength Tunable Passively Q-Switched Alexandrite Laser with Direct Diode-Pumping at 635 nm},
booktitle={Proceedings of the 5th International Conference on Photonics, Optics and Laser Technology - Volume 1: PHOTOPTICS,},
year={2017},
pages={82-89},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0006155500820089},
isbn={978-989-758-223-3},
}
in EndNote Style
TY - CONF
JO - Proceedings of the 5th International Conference on Photonics, Optics and Laser Technology - Volume 1: PHOTOPTICS,
TI - Wavelength Tunable Passively Q-Switched Alexandrite Laser with Direct Diode-Pumping at 635 nm
SN - 978-989-758-223-3
AU - Parali U.
AU - Thomas G.
AU - Minassian A.
AU - Sheng X.
AU - Damzen M.
PY - 2017
SP - 82
EP - 89
DO - 10.5220/0006155500820089