Role of Ce in Yb/Al laser fibers: prevention of photodarkening and thermal effects.
暂无分享,去创建一个
Matthias Jäger | Anka Schwuchow | Sylvia Jetschke | Martin Leich | Sonja Unger | S. Unger | A. Schwuchow | S. Jetschke | M. Leich | M. Jäger
[1] Liang Dong,et al. Bragg gratings in Ce 3+ -doped fibers written by a single excimer pulse , 1993 .
[2] Hartmut Bartelt,et al. Femtosecond pulse-induced fiber Bragg gratings for in-core temperature measurement in optically pumped Yb-doped silica fibers , 2012 .
[3] J. Eden,et al. Linkage of oxygen deficiency defects and rare earth concentrations in silica glass optical fiber probed by ultraviolet absorption and laser excitation spectroscopy. , 2012, Optics express.
[4] Johannes Kirchhof,et al. Codoped materials for high power fiber lasers: diffusion behaviour and optical properties , 2007, SPIE OPTO.
[5] T. Suratwala,et al. Dynamics of defects in Ce³⁺ doped silica affecting its performance as protective filter in ultraviolet high-power lasers. , 2014, Optics express.
[6] Yang Yu,et al. Improvement of radiation resistance by introducing CeO2 in Yb-doped silicate glasses , 2012 .
[7] F. Laurell,et al. Improved photodarkening resistivity in ytterbium-doped fiber lasers by cerium codoping. , 2009, Optics letters.
[8] Tomofumi Arai,et al. Gamma-radiation-induced photodarkening in ytterbium-doped silica glasses , 2011, LASE.
[9] J. Kirchhof,et al. Optical properties of cerium-codoped high power laser fibers , 2013, Photonics West - Optoelectronic Materials and Devices.
[10] Philippe Goldner,et al. Towards rare-earth clustering control in doped glasses , 2001 .
[11] Cesar Jauregui,et al. Simplified modelling the mode instability threshold of high power fiber amplifiers in the presence of photodarkening. , 2015, Optics express.
[12] S. Unger,et al. Transient absorption in pumped Yb fibers opens a path to photodarkening , 2014 .
[13] J. Limpert,et al. Thermo-optical properties of air-clad photonic crystal fiber lasers in high power operation. , 2003, Optics express.
[14] S. Unger,et al. Photodarkening kinetics as a function of Yb concentration and the role of Al codoping. , 2012, Applied optics.
[15] J. S. Stroud. Photoionization of Ce3+ in Glass , 1961 .
[16] Jesper Lægsgaard,et al. Dissolution of rare-earth clusters in SiO2 by Al codoping: A microscopic model , 2002 .
[17] K. Mattsson,et al. Photo darkening of rare earth doped silica. , 2011, Optics express.
[18] J. Kobelke,et al. Materials and technologies for microstructured high power laser fibers , 2005, SPIE Optics + Optoelectronics.
[19] Manfred Rothhardt,et al. Length distributed measurement of temperature effects in Yb-doped fibers during pumping , 2014 .
[20] S. Jetschke,et al. Characterization of photodarkening processes in Yb doped fibers , 2009, LASE.
[21] L. Norin,et al. Preventing photodarkening in ytterbium-doped high power fiber lasers; correlation to the UV-transparency of the core glass. , 2008, Optics express.
[22] K. Schuster,et al. Evolution of fluorine doping following the REPUSIL process for the adjustment of optical properties of silica materials , 2015 .
[23] F. Laurell,et al. Degradation-resistant lasing at 980 nm in a Yb/Ce/Al-doped silica fiber , 2010 .
[24] S. Unger,et al. Efficient Yb laser fibers with low photodarkening by optimization of the core composition. , 2008, Optics express.
[25] H. Vezin,et al. Evidence of AlOHC responsible for the radiation-induced darkening in Yb doped fiber. , 2013, Optics express.
[26] S. Unger,et al. Photodarkening in Yb doped fibers: experimental evidence of equilibrium states depending on the pump power. , 2007, Optics express.
[28] Johannes Kirchhof,et al. Temperature influence on the photodarkening kinetics in Yb-doped silica fibers , 2011 .
[29] J. S. Stroud. Color‐Center Kinetics in Cerium‐Containing Glass , 1965 .
[30] J. J. Montiel i Ponsoda,et al. Photodarkening-induced increase of fiber temperature. , 2010, Applied optics.
[31] J. S. Stroud. Color Centers in a Cerium‐Containing Silicate Glass , 1962 .
[32] Stephan Grimm,et al. Highly efficient Yb-doped silica fibers prepared by powder sinter technology. , 2011, Optics letters.
[33] S. Taccheo,et al. Defects induced in Yb3+/Ce3+ co-doped aluminosilicate fiber glass preforms under UV and γ-ray irradiation. , 2014 .
[34] M. Ferrari,et al. Clustering of rare earth in glasses, aluminum effect: experiments and modeling , 2004 .
[35] U. Röpke,et al. Power-law dependence of the photodarkening rate constant on the inversion in Yb doped fibers. , 2009, Optics letters.
[36] S. Taccheo,et al. Mitigation of photodarkening phenomenon in fiber lasers by 633 nm light exposure. , 2013, Optics letters.
[37] L. Glebov,et al. Specific absorption spectra of cerium in multicomponent silicate glasses , 2010 .
[38] M. Söderlund,et al. Measuring photodarkening from single-mode ytterbium doped silica fibers. , 2006, Optics express.