共 11 条
[3]
Buried waveguide in neodymium-doped phosphate glass obtained by femtosecond laser writing using a double line approach[J]. 龙学文,白晶,刘欣,赵卫,程光华.Chinese Optics Letters. 2013(10)
[5]
Origins of waveguiding in femtosecond laser-structured LiNbO3
[J].
APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING,
2007, 89 (01)
:127-132
[6]
Femtosecond waveguide writing: a new avenue to three-dimensional integrated optics[J] . S. Nolte,M. Will,J. Burghoff,A. Tuennermann.Applied Physics A Materials Science & Processing . 2003 (1)
[7]
Ti:sapphire rib channel waveguide fabricated by reactive ion etching of a planar waveguide[J] . A. Crunteanu,M. Pollnau,G. J?nchen,C. Hibert,P. Hoffmann,R.P. Salathé,R.W. Eason,C. Grivas,D.P. Shepherd.Applied Physics B Lasers and Optics . 2002 (1)
[8]
Measurements of optical loss in GaAs/Al 2 O 3 nonlinear waveguides in the infrared using femtosecond scattering technique[J] . S Venugopal Rao,K Moutzouris,M Ebrahimzadeh,A De Rossi,G Gintz,M Calligaro,V Ortiz,V Berger.Optics Communications . 2002 (4)
[9]
Structural characterisation of Ti:sapphire regions formed by localised high-energy implantation of Ti and O ions[J] . L.D. Morpeth,J.C. McCallum,D.N. Jamieson.Nuclear Inst. and Methods in Physics Research, B . 2001 (1)
[10]
Tunable, continuous-wave Ti:sapphire channel waveguide lasers written by femtosecond and picosecond laser pulses .2 Grivas,Christos,Corbari,Costantino,Brambilla,Gilberto,Lagoudakis,Pavlos G. Optics Letters . 2012