Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Txaber Tavera"'
Publikováno v:
Thin Solid Films. 548:69-74
Micrometric periodical gold/silver alloy linear patterns have been prepared by thermal annealing of bilayer thin films (gold/silver) by means of laser interference metallurgy. These alloyed lines alternate with non-alloyed gold/silver thin films. A c
Autor:
Ainara Rodríguez, Txaber Tavera, G.G. Mandayo, Enrique Castaño, Noemí Pérez, I. Castro-Hurtado, P. Yurrita
Publikováno v:
Applied Surface Science. 276:229-235
A study of the influence of annealing temperature on the structural, morphological and optical properties of WO 3 thin films is presented. The coatings are deposited by RF reactive magnetron sputtering and characterized by XRD analysis and FESEM. The
Publikováno v:
Microelectronic Engineering. 98:672-675
Femtosecond laser micromachining has progressed considerably in the last decade due to the increasing interest in glass microsystems. In this work, we present a systematic study of the femtosecond laser ablation rate of soda-lime glass as a function
Publikováno v:
Applied Surface Science. 258:9370-9373
This work presents the fabrication of hollow-core metallic structures with a complete laser interference lithography (LIL) process. A negative photoresist is used as sacrificial layer. It is exposed to the pattern resulting from the interference of t
Autor:
Txaber Tavera, Santiago M. Olaizola, Ainara Rodríguez, Enrique Castaño, Noemí Pérez, P. Yurrita
Publikováno v:
Applied Surface Science. 258:1175-1180
The production of periodic structures in silicon wafers by four-beam is presented. Because laser interference ablation is a single-step and cost-effective process, there is a great technological interest in the fabrication of these structures for the
Autor:
Noemí Pérez, Alexander Arriola, Michael J. Withford, Txaber Tavera, Alexander Fuerbach, Ainara Rodriguez, Santiago M. Olaizola
Publikováno v:
ResearcherID
Metallic gratings were fabricated using high energy laser interference lithography with a frequency tripled Nd:YAG nanosecond laser. The grating structures were first recorded in a photosensitive layer and afterwards transferred to an Au film. High q
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