• International Journal of Extreme Manufacturing
  • Vol. 2, Issue 3, 35001 (2020)
Michael Bergler1、2、3, Kristian Cvecek1、3, Ferdinand Werr2, Martin Brehl2, Dominique De Ligny2, and Michael Schmidt1、3、*
Author Affiliations
  • 1Friedrich-Alexander-Universit¨at Erlangen-Nürnberg, Institute of Photonic Technologies, Erlangen, Germany
  • 2Friedrich-Alexander-Universit¨at Erlangen-Nürnberg, Institute of Glass and Ceramics, Erlangen, Germany
  • 3Friedrich-Alexander-Universit¨at Erlangen-Nürnberg, SAOT – Erlangen Graduate School in Advanced Optical Technologies, Erlangen, Germany
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    DOI: 10.1088/2631-7990/ab9583 Cite this Article
    Michael Bergler, Kristian Cvecek, Ferdinand Werr, Martin Brehl, Dominique De Ligny, Michael Schmidt. Cooling rate calibration and mapping of ultra-short pulsed laser modifications in fused silica by Raman and Brillouin spectroscopy[J]. International Journal of Extreme Manufacturing, 2020, 2(3): 35001 Copy Citation Text show less
    References

    [1] Mishchik K, Chassagne B, Javaux-L′eger C, H?nninger C, Mottay E, Kling R and Lopez J 2016 Dash line glass- and sapphire-cutting with high power USP laser Proc. SPIE 9740 97400W

    [2] Miyamoto I, Cvecek K, Okamoto Y, Bechthold P and Schmidt M 2009 Laser-matter interaction in fusion welding of fused silica using ultrashort pulse lasers Proc. LAMP 2009, 5th Int. Congress on Laser Advanced Materials Processing p 108

    [3] Alexeev I, Cvecek K, Miyamoto I and Schmidt M 2010 Ultrafast laser processing of transparent media–glass welding Proc. LEF 2010, Laser in der Elektronikproduktion & Feinwerktechnik (Laser in Electronic Production and Precision Mechanics) (Fürth, Germany) pp 125–37

    [4] Diels J C and Rudolph W 2006 Ultrashort Laser Pulse Phenomena. Fundamentals, Techniques, and Applications on a Femtosecond Time Scale 2nd edn (New York: Academic)

    [5] Hernandez-Rueda J, Clarijs J, Van Oosten D and Krol D M 2017 The influence of femtosecond laser wavelength on waveguide fabrication inside fused silica Appl. Phys. Lett. 110 161109

    [6] Weingarten C, Schmickler A, Willenborg E, Wissenbach K and Poprawe R 2017 Laser polishing and laser shape correction of optical glass J. Laser Appl. 29 011702

    [7] Weingarten C, Steenhusen S, Hermans M, Willenborg E and Schleifenbaum J H 2017 Laser polishing and 2PP structuring of inside microfluidic channels in fused silica Microfluid. Nanofluid. 21 165

    [8] Schu?cker D and Schu?cker G D 2014 Advanced Laser Materials Processing (Foster City, CA: OMICS International) (https://doi.org/10.4172/ 978-1-63278-027-0-028)

    [9] Zimmermann F, Lancry M, Plech A, Richter S, Ullsperger T, Poumellec B, Tünnermann A and Nolte S 2017 Ultrashort pulse laser processing of silica at high repetition rates—from network change to residual strain Int. J. Appl. Glass Sci. 8 233–8

    [10] Li C Y and Tomozawa M 2012 Fictive temperature and fictive pressure measurement of silica glasses using FTIR method: for thick samples and samples containing Si–H J. Non-Cryst. Solids 358 3365–71

    [11] Sonneville C, Mermet A, Champagnon B, Martinet C, Margueritat J, De Ligny D, Deschamps T and Balima F 2012 Progressive transformations of silica glass upon densification J. Chem. Phys. 137 124505

    [12] Deschamps T, Kassir-Bodon A, Sonneville C, Margueritat J, Martinet C, De Ligny D, Mermet A and Champagnon B 2013 Permanent densification of compressed silica glass: a raman-density calibration curve J. Phys.: Condens. Matter 25 025402

    [13] Deschamps T, Margueritat J, Martinet C, Mermet A and Champagnon B 2015 Elastic moduli of permanently densified silica glasses Sci. Rep. 4 7193

    [14] Badrinarayanan P, Zheng W, Li Q X and Simon S L 2007 The glass transition temperature versus the fictive temperature J. Non-Cryst. Solids 353 2603–12

    [15] Caponi S, Fontana A, Mattarelli M, Montagna M and Rossi F 2007 The influence of the fictive temperature and the OH content on the dynamical properties of vitreous silica: comparison of Raman, Brillouin, and neutron scattering spectra J. Phys.: Condens. Matter 19 205149

    [16] Shelby J E 2005 Introduction to Glass Science and Technology 2nd edn (Cambridge: Royal Society of Chemistry) (https://doi.org/10.1039/9781847551160)

    [17] Dingwell D B and Webb S L 1990 Relaxation in silicate melts Eur. J. Mineral. 2 427–51

    [18] Jochs W W, Hoffmann H J and Neuroth N M 1988 The effects of thermal treatment below the glass transition temperature on the refractive index of optical glass J. Non-Cryst. Solids 102 255–8

    [19] Levelut C, Le Parc R, Faivre A and Champagnon B 2006 Influence of thermal history on the structure and properties of silicate glasses J. Non-Cryst. Solids 352 4495–9

    [20] Lancry M, R′egnier E and Poumellec B 2012 Fictive temperature in silica-based glasses and its application to optical fiber manufacturing Prog. Mater. Sci. 57 63–94

    [21] Elektrisch geschmolzenes Quarzglas EN08 2019 (available at: http://www.g-v-b.de/File/quarzplatten_d1.pdf)

    [22] Moynihan C T, Easteal A J, Wilder J and Tucker J 1974 Dependence of the glass transition temperature on heating and cooling rate J. Phys. Chem. 78 2673–7

    [23] Yue Y Z, Von Der Ohe R and Jensen S L 2004 Fictive temperature, cooling rate, and viscosity of glasses J. Chem. Phys. 120 8053–9

    [24] Yue Y Z 2008 Characteristic temperatures of enthalpy relaxation in glass J. Non-Cryst. Solids 354 1112–8

    [25] Veber A, Cicconi M R, Reinfelder H and De Ligny D 2018 Combined Differential scanning calorimetry, Raman and Brillouin spectroscopies: a multiscale approach for materials investigation Anal. Chim. Acta 998 37–44

    [26] Boizot B, Agnello S, Reynard B, Boscaino R and Petite G 2003 Raman spectroscopy study of β-irradiated silica glass J. Non-Cryst. Solids 325 22–28

    [27] Hehlen B 2010 Inter-tetrahedra bond angle of permanently densified silicas extracted from their Raman spectra J. Phys.: Condens. Matter 22 025401

    [28] Galeener F L 1982 Planar rings in glasses Solid State Commun 44 1037–40

    [29] Gavenda T, Gedeon O and Jurek K 2015 Irradiation induced densification and its correlation with three-membered rings in vitreous silica J. Non-Cryst. Solids 425 61–66

    [30] Gavenda T, Gedeon O and Jurek K 2017 Structural and volume changes and their correlation in electron irradiated alkali silicate glasses Nucl. Instrum. Methods Phys. Res. Sect. B 397 15–25

    [31] Saavedra R Saavedra R, Le′on M, Martin P, Jim′enez-Rey D, Vila R, Girard S, Boukenter A and Ouerdane Y 2014 Raman measurements in silica glasses irradiated with energetic ions AIP Proc. 1624 118–24

    [32] Cvecek K, Alexeev I, Miyamoto I and Schmidt M 2010 Defect formation in glass welding by means of ultra short laser pulses Phys. Procedia. 5 495–502

    [33] Malitson I H 1965 Interspecimen comparison of the refractive index of fused silica J. Opt. Soc. Am. 55 1205–9

    [34] Miyamoto I, Cvecek K, Okamoto Y and Schmidt M 2014 Internal modification of glass by ultrashort laser pulse and its application to microwelding Appl. Phys. A 114 187–208

    [35] Miyamoto I, Cvecek K and Schmidt M 2013 Crack-free conditions in welding of glass by ultrashort laser pulse Opt. Express 21 14291–302

    [36] Cvecek K, Miyamoto I and Schmidt M 2014 Gas bubble formation in fused silica generated by ultra-short laser pulses Opt. Express 22 15877–93

    [37] Tomozawa M, Koike A and Ryu S R 2008 Exponential structural relaxation of a high purity silica glass J. Non-Cryst. Solids 354 4685–90

    [38] Martinet C, Martinez V, Coussa C, Champagnon B and Tomozawa M 2008 Radial distribution of the fictive temperature in pure silica optical fibers by micro-Raman spectroscopy J. Appl. Phys. 103 083506

    [39] Le Parc R, Levelut C, Pelous J, Martinez V and Champagnon B 2006 Influence of fictive temperature and composition of silica glass on anomalous elastic behaviour J. Phys.: Condens. Matter 18 7507–27

    [40] Miyamoto I, Okamoto Y, Tanabe R, Ito Y, Cvecek K and Schmidt M 2016 Mechanism of dynamic plasma motion in internal modification of glass by fs-laser pulses at high pulse repetition rate Opt. Express 24 25718–31

    [41] Miyamoto I, Okamoto Y, Tanabe R, Ito Y, Schmidt M, Merklein M and Vollertsen F 2014 Characterization of plasma in microwelding of glass using ultrashort laser pulse at high pulse repetition rates Phys. Proc. 56 973–82

    [42] Peng Y L, Agarwal A, Tomozawa M and Blanchet T A 1997 Radial distribution of fictive temperatures in silica optical fibers J. Non-Cryst. Solids 217 272–7

    [43] Deschamps T, Martinet C, De Ligny D and Champagnon B 2009 Elastic anomalous behavior of silica glass under high-pressure: in-situ Raman study J. Non-Cryst. Solids 355 1095–8

    [44] Cvecek K, Miyamoto I, Heberle J, Bergler M, De Ligny D and Schmidt M 2018 Analysis of shockwave formation in glass welding by ultra-short pulses Procedia CIRP 74 339–43

    [45] Maugeri E A, Peuget S, Staicu D, Zappia A, Jegou C and Wiss T 2012 Calorimetric study of glass structure modification induced by α decay J. Am. Ceram. Soc. 95 2869–75

    [46] Weber R, Giedl-Wagner R, F?rster D J, Pauli A, Graf T and Balmer J E 2019 Expected X-ray dose rates resulting from industrial ultrafast laser applications Appl. Phys. A 125 635

    Michael Bergler, Kristian Cvecek, Ferdinand Werr, Martin Brehl, Dominique De Ligny, Michael Schmidt. Cooling rate calibration and mapping of ultra-short pulsed laser modifications in fused silica by Raman and Brillouin spectroscopy[J]. International Journal of Extreme Manufacturing, 2020, 2(3): 35001
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