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Ultrafast Lasers in Materials Research

Published online by Cambridge University Press:  31 January 2011

Abstract

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With the availability of off-the-shelf commercial ultrafast lasers, a small revolution in materials research is underway, as it is now possible to use these tools without being an expert in the development of the tools themselves. Lasers with short-duration optical pulses—in the sub-picosecond (less than one-trillionth of a second) range—are finding a variety of applications, from basic research on fast processes in materials to new methods for microfabrication by direct writing. A huge range of pulse energies are being used in these applications, from less than 1 nJ (a billionth of a joule) to many joules.

Keywords

Type
Research Article
Copyright
Copyright © Materials Research Society 2006

References

1Zewail, Ahmed H., J. Phys. Chem. A 104 (2000) p. 5660.CrossRefGoogle Scholar
2Strickland, D. and Mourou, G.Opt. Commun. 56 (3) (1985) p. 219.CrossRefGoogle Scholar
3Tas, G. and Maris, H.J.Phys. Rev. B 49 (1994) p. 15046.CrossRefGoogle Scholar
4Lindenberg, A.M.Larsson, J.Sokolowski-Tinten, K., Gaffney, K.J.Blome, C.Synnergren, O.Sheppard, J.Caleman, C.MacPhee, A.G.Weinstein, D.Lowney, D.P.Allison, T.K.Matthews, T.Falcone, R.W.Cavalieri, A.L.Fritz, D.M.Lee, S.H.Bucksbaum, P.H.Reis, D.A.Rudati, J.Fuoss, P.H.Kao, C.C.Siddons, D.P.Pahl, R.Als-Nielsen, J., Duesterer, S.Ischebeck, R.Schlarb, H.Schulte-Schrepping, H., Tschentscher, Th., Schneider, J.Linde, D. von der, Hignette, O.Sette, F.Chapman, H.N.Lee, R.W.Hansen, T.N.Techert, S.Wark, J.S.Bergh, M.Huldt, G.Spoel, D. van der, Timneanu, N.Hajdu, J.Akre, R.A.Bong, E.Krejcik, P.Arthur, J.Brennan, S.Luening, K. and Hastings, J.B.Science 308 (2005) p. 392.CrossRefGoogle Scholar
5Sprangle, P.Esarey, E.Ting, A. and Joyce, G.Appl. Phys. Lett. 53 (22) (1988) p. 2146.CrossRefGoogle Scholar
6Rousse, A.Phuoc, K.T.Shah, R.Pukhov, A.Lefebvre, E.Malka, V.Kiselev, S.Burgy, F.Rousseau, J.P.Umstadter, D. and Hulin, D.Phys. Rev. Lett. 93 135005 (2005).CrossRefGoogle Scholar
7Mourou, G. and Umstadter, D.Extreme Light,” Sci. Am. 286 (5) (2002) p. 80.CrossRefGoogle ScholarPubMed
8Dlott, D.D. in Annu. Rev. Phys. Chem. 50 (1999) p. 251.CrossRefGoogle Scholar
9Weiner, A.M.Prog. Quantum Electron. 19 (1995) p. 161.CrossRefGoogle Scholar
10Shen, N.Datta, D.Schaffer, C.B.LeDuc, P.Ingber, D.E. and Mazur, E.Mech. Chem. Biosystems 2 (2005) p. 17.Google Scholar
11Bartels, R.A.Paul, A.Green, H.Kapteyn, H.C.Murnane, M.M.Backus, S.Christov, I.P., Liu, Y.Attwood, D. and Jacobsen, C.Science 297 (2002) p. 376.CrossRefGoogle Scholar
12Beard, M.C.Turner, G.M. and Schmuttenmaer, C.A.J. Phys. Chem. B 106 (2002) p. 7146.CrossRefGoogle Scholar
13Hu, B.B. and Nuss, M.C.Opt. Lett. 20 (1995) p. 1716.CrossRefGoogle Scholar
14Stoian, R.Boyle, M.Thoss, A.Rosenfeld, A.Korn, G.Hertel, I.V. and Campbell, E.E.B., Appl. Phys. Lett. 80 (2002) p. 353.CrossRefGoogle Scholar