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Beyond the Usefulness of Quasicrystals

Published online by Cambridge University Press:  17 March 2011

J.M. Dubois*
Affiliation:
Laboratoire de Science et Génie des Matériaux Métalliques (UMR 7584 CNRS-INPL), Ecole des Mines, Parc de Saurupt, F-54042 Nancy
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Abstract

For more than a decade, quasicrystals were considered to exhibit only fundamental interest in so far that they have raised basic questions regarding the organization and stability of condensed matter. As well, they addressed the mechanisms of wave propagation in aperiodic solids. In more recent years, they turned to become useful materials in various mechanical devices, in solar absorbers or in heat insulation coatings. Nowadays, the science of quasicrystals, and especially the relevant high-dim crystallography techniques, have issued quite useful concepts and methods that prove useful in neighboring domains of condensed matter physics, of mechanics, of low temperature physics, etc. Hence, this article puts more emphasis on a few of the new subjects that quasicrystals science has helped us to study rather than on the few possible breakthroughs of quasicrystalline materials identified yet on the market.

Type
Research Article
Copyright
Copyright © Materials Research Society 2001

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References

[1] Shechtman, D. and Lang, C.I., in Quasicrystals, Eds. Sordelet, D.J. and Dubois, J.M., MRS Bulletin 22–11 (1997) 40.Google Scholar
[2] Maddox, J., Nature 317 (1985) 471.Google Scholar
[3] Dubost, B., Lang, J.M., Tanaka, M., Sainfort, P. and Audier, M., Nature 324 (1986) 48; A.P. Tsai, A. Inoue and T. Masumoto, Jpn. J. Appl. Phys. 26 (1987) 1505.Google Scholar
[4] see e.g. Boudard, M., in Quasicrystals, Current Topics, Eds. Belin-Ferré, E., Berger, C., Quiquandon, M. and Sadoc, A., (World Scientific, Singapore, 2000), p. 73.Google Scholar
[5] see e.g. Gratias, D., Quiquandon, M. and Katz, A., in Quasicrystals, Current Topics, Eds. Belin-Ferré, E., Berger, C., Quiquandon, M. and Sadoc, A., (World Scientific, Singapore, 2000), p. 1.Google Scholar
[6] Coddens, G., Soustelle, C., Bellissent, R. and Calvayrac, Y., Europhys. Lett. 23 (1993) 33; G. Coddens, Ann. Chim. Fr. 18 (1993) 513; G. Coddens and R. Bellissent, J. Non Cryst. Sol. 153&154 (1993) 557.Google Scholar
[7] Dolinsek, J., Apih, T., Simsic, M. and Dubois, J.M., Phys. Rev. Lett. 82–3 (1999) 572.Google Scholar
[8] Shechtman, D., Blech, I., Gratias, D. and Cahn, J.W., Phys. Rev. Lett. 53 (1984) 1951.Google Scholar
[9] Tsai, A.P., Guo, J.Q., Abe, E., Takakura, H. and Sato, T.J., Nature 408 (2000) 537.Google Scholar
[10] Peters, J. and Trebin, H.R., Phys. Rev. B 43 (1991) 1820.Google Scholar
[11] Olami, Z. and Alexander, S., Phys. Rev. B 39–3 (1989) 1478.Google Scholar
[12] Tsai, A.P., in Symposium K: Quasicrystals, Eds. Belin-Ferré, E., Thiel, P., Tsai, A.P. and Urban, K. (MRS Proc. Series, Warrendale, 2001), in press.Google Scholar
[13] Takeda, M., Fujimori, M., Hori, A. and Kimura, K., in Quasicrystals, Eds. Janot, C. and Mosseri, R. (World Scientific, Singapore, 1995), p. 739.Google Scholar
[14] Dixmier, J., private communication, unpublished; see also N. Tamura and J.L. Verger-Gaugry, J. Non Cryst. Solids 153-154 (1993) 546.Google Scholar
[15] Dmitrienko, V.E. and Kléman, M., Phil. Mag. Lett. 79–6 (1999) 359.Google Scholar
[16] Dubois, J.M. and Janot, C., Phil. Mag. B 61–4 (1990) 649.Google Scholar
[17] Kalugin, P.A. and Katz, A., Europhys. Lett. 21(9) (1993) 921; P. Kalugin, in Beyond Quasicrystals, eds. Axel, F. and Gratias, D. (Les Editions de Physique, Les Ulis, 1996), p. 191.Google Scholar
[18] Mandal, R.K., in Quasicrystals, Eds. Gähler, F., Kramer, P., Trebin, H.R. and Urban, K., Mat. Sc. Eng., in press.Google Scholar
[19] Donnadieu, P., in New Horizons in Quasicrystals, Research and Applications, Eds. Goldman, A.I., Sordelet, D.J., Thiel, P.A. and Dubois, J.M. (World Scientific, Singapore, 1997), p. 136; in Aperiodic '97, Eds. M. de Boissieu, J.L. Verger-Gaugry and R. Currat (World Scientific, Singapore, 1998), p. 183.Google Scholar
[20] Dahlborg, U., Howells, W.S., Calvo-Dahlborg, M. and Dubois, J.M., J. Phys.: Cond. Matter 12 (2000) 4021.Google Scholar
[21] Steurer, W., Z. Kristallogr. 215 (2000) 323.Google Scholar
[22] Dong, C. and Dubois, J.M., J. Non Cryst. Solids 159 (1993) 107.Google Scholar
[23] Thiel, P.A., in Quasicrystals, Eds. Gähler, F., Kramer, P., Trebin, H.R. and Urban, K., Mat. Sc. Eng., in press.Google Scholar
[24] McGrawth, R., in Symposium K: Quasicrystals, Eds. Belin-Ferré, E., Thiel, P., Tsai, A.P. and Urban, K. (MRS Proc. Series, Warrendale, 2001), in press.Google Scholar
[25] Rivier, N., in New Horizons in Quasicrystals, Research and Applications, Eds. Goldman, A.I., Sordelet, D.J., Thiel, P.A. and Dubois, J.M. (World Scientific, Singapore, 1997), p. 188.Google Scholar
[26] Dubois, J.M. and Weinland, P., French Patent n° 2635117 (1988).Google Scholar
[27] Dubois, J.M., Plaindoux, P., Belin-Ferré, E., Tamura, N., Sordelet, D.J., in Quasicrystals, Eds. Takeuchi, S. et Fujiwara, T. (World Scientific, Singapore, 1998), p. 733.Google Scholar
[28] Gil-Gavatz, M., Rouxel, D., Pigeat, P., Weber, B. and Dubois, J.M., Phil. Mag. 80–9 (2000) 2083; C. Jenks, in Quasicrystals, Preparation, Properties and Applications, Eds. J.M. Dubois, P.A. Thiel, A.P. Tsai and K. Urban, MRS Proc. Series, Vol. 553 (1999), p. 219.Google Scholar
[29] Gennes, P.G. de, J. Modern Phys. 57–3 (1985) 827.Google Scholar
[30] Belin-Ferré, E., Fournée, V. and Dubois, J.M., J. Phys.: Cond. Matter 12–37 (2000) 8159.Google Scholar
[31] Krim, J., Scientific American, Oct. 1996, p. 48.Google Scholar
[32] Brunet, P., Sordelet, D.J., Merstralinger, A. and Dubois, J.M., unpublished results.Google Scholar
[33] Duneau, M. and Audier, M., Acta Cryst. A55 (1999) 746.Google Scholar
[34] Lifshitz, R., Reviews Modern Phys. 69–4 (1997) 1181.Google Scholar
[35] Faraday, M., Philos. Trans. Roy. Soc. London 121 (1831) 299.Google Scholar
[36] Edwards, W.S. and Fauve, S., Phys. Rev. E 47 (1993) R788.Google Scholar
[37] Lifshitz, RT. and Petrich, D.M., Phys. Rev. Lett. 79–7 (1997) 1261.Google Scholar
[38] Swift, J.B. and Hohenberg, P.C., Phys. Rev. A 15 (1977) 319.Google Scholar
[39] Guidoni, L., in Quasicristaux Optiques: Refroidissement et Piègeage d'Atomes de Césium dans un Potentiel Lumineux Quasipériodique, (PhD Dissertation, Paris, 1998), unpublished; L. Guidoni and P. Verkerk, Phys. Rev. A 57 (1998) R1501.Google Scholar