Characterization and mechanism of glass microwelding by double-pulse ultrafast laser irradiation.
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K. Sugioka | Y. Hanada | K. Midorikawa | Jian Xu | Dong Wu | T. Makimura | R. Suganuma | Haiyu Wang | Si-zhu Wu
[1] Réal Vallée,et al. Reinforced direct bonding of optical materials by femtosecond laser welding. , 2012, Applied optics.
[2] Michael Schmidt,et al. Characteristics of laser absorption and welding in FOTURAN glass by ultrashort laser pulses. , 2011, Optics express.
[3] Koji Sugioka,et al. Efficient microwelding of glass substrates by ultrafast laser irradiation using a double-pulse train. , 2011, Optics letters.
[4] Michael Schmidt,et al. Evaluation of nonlinear absorptivity in internal modification of bulk glass by ultrashort laser pulses. , 2011, Optics express.
[5] A. Tünnermann,et al. Bonding of glass with femtosecond laser pulses at high repetition rates , 2011 .
[6] Michael Schmidt,et al. Evaluation of nonlinear absorptivity and absorption region in fusion welding of glass using ultrashort laser pulses , 2011 .
[7] Masaaki Sakakura,et al. Mechanism of heat-modification inside a glass after irradiation with high-repetition rate femtosecond laser pulses , 2010 .
[8] I. Sohn,et al. Femtosecond laser bonding of glasses and ion migration in the interface , 2010 .
[9] K. Itoh,et al. Direct Welding between Copper and Glass Substrates with Femtosecond Laser Pulses , 2008 .
[10] Stephen Ho,et al. Transition from thermal diffusion to heat accumulation in high repetition rate femtosecond laser writing of buried optical waveguides. , 2008, Optics express.
[11] A. Horn,et al. Investigations on ultrafast welding of glass–glass and glass–silicon , 2008 .
[12] Eric Mazur,et al. Femtosecond laser micromachining in transparent materials , 2008 .
[13] K. Itoh,et al. Direct joining of glass substrates by 1 kHz femtosecond laser pulses , 2007 .
[14] Kazuyoshi Itoh,et al. Structural modification in fused silica by a femtosecond fiber laser at 1558 nm. , 2006, Optics express.
[15] J. Nishii,et al. Space-selective laser joining of dissimilar transparent materials using femtosecond laser pulses , 2006 .
[16] Fumiyo Yoshino,et al. Heat accumulation effects in femtosecond laser-written waveguides with variable repetition rate. , 2005, Optics express.
[17] J. Nishii,et al. Welding of Transparent Materials Using Femtosecond Laser Pulses , 2005 .
[18] Koji Sugioka,et al. Investigation of photoreaction mechanism of photosensitive glass by femtosecond laser , 2005 .
[19] C. Ho. Effects of polarizations of a laser on absorption in a paraboloid of revolution-shaped welding or drilling cavity , 2004 .
[20] Guillaume Petite,et al. Dynamics of femtosecond laser interactions with dielectrics , 2004 .
[21] E. Mazur,et al. Bulk heating of transparent materials using a high-repetition-rate femtosecond laser , 2003 .
[22] Liwei Lin,et al. The application of nanosecond-pulsed laser welding technology in MEMS packaging with a shadow mask , 2002 .
[23] Guillaume Petite,et al. Time-resolved studies of carriers dynamics in wide band gap materials , 1996 .
[24] Perry,et al. Nanosecond-to-femtosecond laser-induced breakdown in dielectrics. , 1996, Physical review. B, Condensed matter.