We study waveguide fabrication in lithium-niobo-phosphate glass, aiming at a practical method of single-stage fabrication of nonlinear integrated-optics devices. We observed chemical transformations or material redistribution during the course of high repetition rate femtosecond laser inscription. We believe that the laser-induced ultrafast heating and cooling followed by elements diffusion on a microscopic scale opens the way toward the engineering non-equilibrium sates of matter and thus can further enhance Refractive Index (RI) contrasts by virtue of changing glass composition in and around the fs tracks
Fluorozirconate glasses, such as ZBLAN (ZrF4-BaF2-LaF3- AlF3-NaF), have a high infrared transparency...
In order to understand the physical processes associated with fs-laser waveguide writing in glass, t...
We investigate the interaction of ultrashort laser pulses with ternary zinc phosphate glasses. We ex...
We study waveguide fabrication in lithium-niobo-phosphate glass, aiming at a practical method of sin...
We study waveguide fabrication in lithium-niobo-phosphate glass, aiming at a practical method of sin...
We study numerically depressed-index cladding, buried, micro-structured optical waveguides that can ...
We report the relationship between the initial glass composition and the resulting microstructural c...
We study numerically depressed-index cladding, buried, micro-structured optical waveguides that can ...
We study numerically depressed-index cladding, buried, micro-structured optical waveguides that can ...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We have studied the relationship between the initial glass composition and the structural changes as...
Detailed studies of intense light – material interactions has led to new insights into fs laser indu...
Fluorozirconate glasses, such as ZBLAN (ZrF4-BaF2-LaF3- AlF3-NaF), have a high infrared transparency...
In order to understand the physical processes associated with fs-laser waveguide writing in glass, t...
We investigate the interaction of ultrashort laser pulses with ternary zinc phosphate glasses. We ex...
We study waveguide fabrication in lithium-niobo-phosphate glass, aiming at a practical method of sin...
We study waveguide fabrication in lithium-niobo-phosphate glass, aiming at a practical method of sin...
We study numerically depressed-index cladding, buried, micro-structured optical waveguides that can ...
We report the relationship between the initial glass composition and the resulting microstructural c...
We study numerically depressed-index cladding, buried, micro-structured optical waveguides that can ...
We study numerically depressed-index cladding, buried, micro-structured optical waveguides that can ...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We report on the operational parameters that are required to fabricate buried, microstructured waveg...
We have studied the relationship between the initial glass composition and the structural changes as...
Detailed studies of intense light – material interactions has led to new insights into fs laser indu...
Fluorozirconate glasses, such as ZBLAN (ZrF4-BaF2-LaF3- AlF3-NaF), have a high infrared transparency...
In order to understand the physical processes associated with fs-laser waveguide writing in glass, t...
We investigate the interaction of ultrashort laser pulses with ternary zinc phosphate glasses. We ex...