On the bending strength of fused silica flexures fabricated by ultrafast lasers [Invited]
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[1] A. Franks,et al. Single-point diamond machining of glasses , 1989, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[2] Yves Bellouard,et al. Monolithic integration in fused silica: When fluidics, mechanics and optics meet in a single substrate , 2009, 2009 International Symposium on Optomechatronic Technologies.
[3] M. Tomozawa,et al. Fracture of Glasses , 1996 .
[4] S. Nolte,et al. Femtosecond waveguide writing: a new avenue to three-dimensional integrated optics , 2003 .
[5] K. Miura,et al. Writing waveguides in glass with a femtosecond laser. , 1996, Optics letters.
[6] Andreas Tünnermann,et al. Discrete nonlinear localization in femtosecond laser written waveguides in fused silica. , 2005, Optics express.
[7] S. Matsuo,et al. Examination of Etching Agent and Etching Mechanism on Femotosecond Laser Microfabrication of Channels Inside Vitreous Silica Substrates , 2009 .
[8] Gilberto Brambilla,et al. The ultimate strength of glass silica nanowires. , 2009, Nano letters.
[9] J. F. H. CUSTERS. Plastic Deformation of Glass during Scratching , 1949, Nature.
[10] Yves Bellouard,et al. Optofluidic lab-on-a-chip for rapid algae population screening , 2011, Biomedical optics express.
[11] Charles R. Kurkjian,et al. The Strength of Silicate Glasses: What Do We Know, What Do We Need to Know? , 2010 .
[12] M. Kakihana,et al. Materials Research Society Symposium - Proceedings , 2000 .
[13] Yves Bellouard,et al. Integrating optics and micro-mechanics in a single substrate: a step toward monolithic integration in fused silica. , 2005, Optics express.
[14] Y. Bellouard,et al. Fabrication of high-aspect ratio, micro-fluidic channels and tunnels using femtosecond laser pulses and chemical etching. , 2004, Optics express.
[15] Yves Bellouard,et al. Monolithic Three-Dimensional Integration of Micro-Fluidic Channels and Optical Waveguides in Fused Silica , 2003 .
[16] J. Paros. How to design flexure hinges , 1965 .
[17] R. H. Doremus,et al. Static Fatigue in Glass , 1974 .
[18] R Osellame,et al. 1.5 mum single longitudinal mode waveguide laser fabricated by femtosecond laser writing. , 2007, Optics express.
[19] Nanoscale damage during fracture in silica glass , 2006, cond-mat/0608730.
[20] Y. Shiue,et al. Apparent activation energy of fused silica optical fibers in static fatigue in aqueous environments , 2002 .
[21] Peter G. Kazansky,et al. Radially polarized optical vortex converter created by femtosecond laser nanostructuring of glass , 2011 .
[22] E Audouard,et al. Dynamic ultrafast laser spatial tailoring for parallel micromachining of photonic devices in transparent materials. , 2009, Optics express.
[23] D. Hull,et al. The effect of mixed mode I/III on crack evolution in brittle solids , 1994 .
[24] Lionel Canioni,et al. Three-dimensional optical data storage using third-harmonic generation in silver zinc phosphate glass. , 2008, Optics letters.
[25] C. P. Chen,et al. Fracture mechanics evaluation of optical fibers , 2003 .
[26] B. A. Proctor,et al. The strength of fused silica , 1967, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[27] O. E. Alarcon,et al. Fracture of glass in tensile and bending tests , 1994 .
[28] Koji Sugioka,et al. Microfluidic laser embedded in glass by three-dimensional femtosecond laser microprocessing. , 2004, Optics letters.
[29] J. M. Paros,et al. Flexure Pivots to Replace Knife Edge and Ball Bearing , 1965 .
[30] R. J. Charles,et al. Static Fatigue of Glass. II , 1958 .
[31] G. Kermouche,et al. On the plastic deformation of soda-lime glass–a Cr3+ luminescence study of densification , 2011 .
[32] F Célarié,et al. Glass breaks like metal, but at the nanometer scale. , 2003, Physical review letters.
[33] P. Corkum,et al. Polarization-selective etching in femtosecond laser-assisted microfluidic channel fabrication in fused silica. , 2005, Optics letters.
[34] Koji Sugioka,et al. Three-dimensional micro-optical components embedded in photosensitive glass by a femtosecond laser. , 2003, Optics letters.