We demonstrate a novel approach to femtosecond microfabrication of transparent dielectrics, which employs nondiffracting Bessel beams instead of the conventionally used Gaussian beams. The main advantage of Bessel beams is the possibility of recording linear photomodified tracks, extending along the lines of nondiffractive beam propagation without sample translation, as would be required for Gaussian beams. Recording of patterns with an aspect ratio of up to 10(2)-10(3) in vitreous silica using amplified femtosecond Ti:saphire laser pulses is demonstrated
International audienceTransparent dielectrics, particularly glass, are becoming ubiquitous in techno...
AbstractThe use of ultrashort laser pulses has been shown to be an attractive option for high qualit...
Femtosecond Bessel beams are demonstrated for high aspect ratio machining in the filamentation regim...
We demonstrate a new technique for femtosecond microfabrication in transparent dielectrics, which em...
International audienceBessel beams provide a novel route for ultrafast laser processing of solid die...
International audienceUltrafast lasers have been a revolution in a number of areas of science and te...
Ultrafast Bessel beams demonstrate a significant capacity of structuring transparent materials with ...
International audienceTransparent materials such as glass and sapphire are ubiq-uitous in modern tec...
International audienceUltrafast lasers have revolutionized materials science because of the high pea...
International audienceGlass processing is an important technological problem since this class of mat...
International audienceThe field of femtosecond beam shaping is undergoing rapid expansion for numero...
International audienceWe report the generation of femtosecond Bessel beams of conical half-angle 26 ...
Femtosecond laser micromachining is a laser processing technology with proven potential for the fabr...
Also selected for Virtual Journal of Ultrafast Science and Highlighted Nature PhotonicsInternational...
International audienceFemtosecond laser micromachining is a laser processing technology with proven ...
International audienceTransparent dielectrics, particularly glass, are becoming ubiquitous in techno...
AbstractThe use of ultrashort laser pulses has been shown to be an attractive option for high qualit...
Femtosecond Bessel beams are demonstrated for high aspect ratio machining in the filamentation regim...
We demonstrate a new technique for femtosecond microfabrication in transparent dielectrics, which em...
International audienceBessel beams provide a novel route for ultrafast laser processing of solid die...
International audienceUltrafast lasers have been a revolution in a number of areas of science and te...
Ultrafast Bessel beams demonstrate a significant capacity of structuring transparent materials with ...
International audienceTransparent materials such as glass and sapphire are ubiq-uitous in modern tec...
International audienceUltrafast lasers have revolutionized materials science because of the high pea...
International audienceGlass processing is an important technological problem since this class of mat...
International audienceThe field of femtosecond beam shaping is undergoing rapid expansion for numero...
International audienceWe report the generation of femtosecond Bessel beams of conical half-angle 26 ...
Femtosecond laser micromachining is a laser processing technology with proven potential for the fabr...
Also selected for Virtual Journal of Ultrafast Science and Highlighted Nature PhotonicsInternational...
International audienceFemtosecond laser micromachining is a laser processing technology with proven ...
International audienceTransparent dielectrics, particularly glass, are becoming ubiquitous in techno...
AbstractThe use of ultrashort laser pulses has been shown to be an attractive option for high qualit...
Femtosecond Bessel beams are demonstrated for high aspect ratio machining in the filamentation regim...