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Optical Materials Express

Optical Materials Express

  • Editor: David J. Hagan
  • Vol. 3, Iss. 10 — Oct. 1, 2013
  • pp: 1789–1791

Feature issue introduction: Progress in Ultrafast Laser Modifications of Materials

L. Canioni, Y. Bellouard, Y. Cheng, and T. Cardinal  »View Author Affiliations


Optical Materials Express, Vol. 3, Issue 10, pp. 1789-1791 (2013)


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Abstract

This feature offers papers related to the first topical meeting, Progress in Ultrafast Laser Modifications of Materials 2013 held in April 2013 at Cargèse, Corsica Island, France, and encompasses advances in science and technology of ultrafast laser modification of materials, from the fundamentals–the interaction of ultrafast non-ablative pulses with dielectrics and other transparent materials, to the applications in various technological fields.

© 2013 Optical Society of America

OCIS Codes
(140.0140) Lasers and laser optics : Lasers and laser optics

History
Original Manuscript: September 30, 2013
Manuscript Accepted: September 30, 2013
Published: October 1, 2013

Virtual Issues
Ultrafast Laser Modification of Materials (2013) Optical Materials Express

Citation
L. Canioni, Y. Bellouard, Y. Cheng, and T. Cardinal, "Feature issue introduction: Progress in Ultrafast Laser Modifications of Materials," Opt. Mater. Express 3, 1789-1791 (2013)
http://www.opticsinfobase.org/ome/abstract.cfm?URI=ome-3-10-1789


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References

  1. F. Zhang, Y. Teng, Y. Yu, K. N. Sharafudeen, K. Hirao, and J. Qiu, “Formation and applications of periodic structures in transparent materials induced by single fs laser beam,” (in press),” Opt. Mater. Express (2013).
  2. S. Das, H. Messaoudi, A. Debroy, E. McGlynn, and R. Grunwald, “Multiphoton excitation of surface plasmon-polaritons and scaling of nanoripple formation in large bandgap materials,” Opt. Mater. Express3(10), 1705–1715 (2013). [CrossRef]
  3. R. Stoian, K. Mishchik, G. Cheng, C. Mauclair, C. D’Amico, J. P. Colombier, and M. Zamfirescu, “Investigation and control of ultrafast laser-induced isotropic and anisotropic nanoscale-modulated index patterns in bulk fused silica,” Opt. Mater. Express3(10), 1755–1768 (2013). [CrossRef]
  4. R. R. Buividas, S. Rekštytė, M. Malinauskas, and S. Juodkazis, “Nano-groove and 3D fabrication by controlled avalanche using femtosecond laser pulses,” Opt. Mater. Express3(10), 1674–1686 (2013). [CrossRef]
  5. M. Sun, U. Eppelt, W. Schulz, and J. Zhu, “Role of thermal ionization in internal modification of bulk borosilicate glass with picosecond laser pulses at high repetition rates,” Opt. Mater. Express3(10), 1716–1726 (2013). [CrossRef]
  6. B. Poumellec, M. Lancry, R. Desmarchelier, E. Hervé, F. Brisset, and J. Poulin, “Asymmetric Orientational Writing in glass with femtosecond laser irradiation,” Opt. Mater. Express3(10), 1586–1599 (2013). [CrossRef]
  7. S. Richter, C. Miese, S. Döring, F. Zimmermann, M. Withford, A. Tünnermann, and S. Nolte, “Laser induced nanogratings beyond fused silica - periodic nanostructures in borosilicate glasses and ULE,” Opt. Mater. Express3(8), 1161–1166 (2013). [CrossRef]
  8. G. Papon, Y. Petit, N. Marquestaut, A. Royon, M. Dussauze, V. Rodriguez, T. Cardinal, and L. Canioni, “Fluorescence and second-harmonic generation correlative microscopy to probe space charge separation and silver cluster stabilization during direct laser writing in a tailored silver-containing glass,” (in press) Opt. Mater. Express (2013).
  9. A. Schaap and Y. Bellouard, “Molding topologically-complex 3D polymer m1#icrostructures from femtosecond laser machined glass,” Opt. Mater. Express3(9), 1428–1437 (2013). [CrossRef]
  10. A. Jesacher, P. Salter, and M. Booth, “Refractive index profiling of direct laser written waveguides: tomographic phase imaging,” Opt. Mater. Express3(9), 1223–1232 (2013). [CrossRef]
  11. R. He, Q. An, Y. Jia, G. Castillo-Vega, J. Vázquez de Aldana, and F. Chen, “Femtosecond laser micromachining of lithium niobate depressed cladding waveguides,” Opt. Mater. Express3(9), 1378–1384 (2013). [CrossRef]
  12. M. Mikutis, T. Kudrius, G. Šlekys, D. Paipulas, and S. Juodkazis, “High efficiency volume Bragg gratings formed in fused silica by femtosecond Gauss-Bessel laser beams,” (in press) Opt. Mater. Express (2013).
  13. D. Hélie, S. Gouin, and R. Vallée, “Assembling an endcap to optical fibers by femtosecond laser welding and milling,” Opt. Mater. Express3(10), 1742–1754 (2013). [CrossRef]
  14. Y. Liao, L. Qiao, Z. Wang, M. Wang, L. Liu, K. Sugioka, and Y. Cheng, “Fabrication of a liquid crystal light modulator by use of femtosecond-laser-induced nanoripples,” Opt. Mater. Express3(10), 1698–1704 (2013). [CrossRef]

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