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Physical Properties of Graphene

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Physical Properties of Graphene ( physical-properties-graphene )

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64 The Dirac Equation for Relativistic Fermions [12] R. Saito, G. Dresselhaus, and M. S. Dresselhaus, Physical Properties of Carbon Nanotubes, Imperial College Press (1998). [13] K. S. Novoselov, D. Jiang, T. Booth, V. V. Khotkevich, S. M. Morozov, and A. K. Geim, PNAS 102, 10451 (2005). [14] C. Berger, Z. M. Zong, T. B. Li, X. B. Li, A. Y. Ogbazghi, R. Feng, Z. T. Dai, A. N. Marchenkov, E. H. Conrad, P. N. First, and W. A. de Heer, J. Phys. Chem. B, 108, 19912 (2004); for a review on the fabrication technique see: W. A. de Heer, C. Berger, X. Wu, P. N. First, E. H. Conrad, X. B. Li, T. B. Li, M. Sprinkle, J. Hass, M. Sadowski, M. Potemski, and G. Martinez, Solid State Comm. 143, 92 (2007). [15] F. Varchon, R. Feng, J. Hass, X. Li, B. Ngoc Nguyen, C. Naud, P. Mallet, J.-Y. Veuillen, C. Berger, E. H. Conrad, and L. Magaud, Phys. Rev. Lett. 99, 126805 (2007) [16] J. Hass, F. Varchon, J. E. Millan-Otoya, M. Sprinkle, W. A. de Heer, C. Berger, P. N. First, L. Magaud, and E. H. Conrad, arXiv:0706.2134. [17] P. R. Wallace, Phys. Rev. 71, 622 (1947). [18] C. Bena and G. Montambaux, arXiv:0712.0765. [19] P. Dietl, F. Pi ́echon, and G. Montambaux, arXiv:0707.0219; M.O. Go- erbig, J.-N. Fuchs, G. Montambaux, and F. Pi ́echon, arXiv:0803.0912. [20] J. P. Hobson and W. A. Nierenberger, Phys. Rev. 89, 662 (1953). [21] A. Damascelli, Physica Scripta T109, 61 (2004). [22] A. Bostwick, T. Ohta, Th. Seyller, K. Horn, and E. Rotenberg, Nature Physics 3, 36 (2007). [23] S. Y. Zhou, G.-H. Gweon, J. Graf, A. V. Fedorov, C. D. Spataru, R. D. Diehl, K. Kopelevich, D.-H. Lee, S. G. Louie, A. Lanzara, Nature Phys. 2, 595-599 (2006). [24] C. Itzykson and J.-B. Zuber, Quantum Field Theory, McGraw-Hill (1985). [25] S. Weinberg, The Quantum Theory of Fields I, Cambridge UP (1995).

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