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150 Bibliographie[M. 2009] Craciun M., Russo S., Morpurgo A. Yamamoto M. Oostinga J. <strong>et</strong> TaruchaS. Tri<strong>la</strong>yer graphene is a semim<strong>et</strong>al with a gate-tunable band over<strong>la</strong>p. NatNano, vol. 4, no. 6, pages 383388, Juin 2009. (Cité en pages 90, 93 <strong>et</strong> 100.)[Martin 2008] J. Martin, N. Akerman, G. Ulbricht, T. Lohmann, J. H. Sm<strong>et</strong>, K. vonKlitzing <strong>et</strong> A. Yacoby. Observation of electron-hole puddles in graphene usinga scanning single-electron transistor. Nat Phys, vol. 4, no. 2, pages 144148,Février 2008. (Cité en pages 40, 41, 71 <strong>et</strong> 77.)[McClure 1957] J. W. McClure. Band Structure of Graphite and de Haas-van AlphenEect. Phys. Rev., vol. 108, no. 3, pages 612618, Nov 1957. (Cité enpage 93.)[Miller 2010] David L. Miller, Kevin D. Kubista, Gregory M. Rutter, Ming Ruan,Walt A. de Heer, Markus Kindermann, Phillip N. First <strong>et</strong> Joseph A. Stroscio.Real-space mapping of magn<strong>et</strong>ically quantized graphene states. Nat Phys,vol. 6, no. 10, pages 811817, Octobre 2010. (Cité en page 40.)[Min 2008a] Hongki Min <strong>et</strong> A. H. MacDonald. Chiral decomposition in the electronicstructure of graphene multi<strong>la</strong>yers. Phys. Rev. B, vol. 77, no. 15, page 155416,Apr 2008. (Cité en pages 89 <strong>et</strong> 106.)[Min 2008b] Hongki Min <strong>et</strong> Al<strong>la</strong>n H. MacDonald. Electronic Structure of Multi<strong>la</strong>yerGraphene. Progress of Theor<strong>et</strong>ical Physics Supplement, vol. 176, pages 227252, 2008. (Cité en pages 11, 12, 13, 17, 102 <strong>et</strong> 106.)[Moser 2007] J. Moser, A. Barreiro <strong>et</strong> A. Bachtold. Current-induced cleaning ofgraphene. Applied Physics L<strong>et</strong>ters, vol. 91, no. 16, page 163513, 2007. (Citéen page 65.)[Mucciolo 2009] E. R. Mucciolo, A. H. Castro N<strong>et</strong>o <strong>et</strong> C. H. Lewenkopf. Conductancequantization and transport gaps in disordered graphene nanoribbons.Phys. Rev. B, vol. 79, no. 7, page 075407, Feb 2009. (Cité en pages 125<strong>et</strong> 128.)[Nakamura 2008a] Masaaki Nakamura <strong>et</strong> Li<strong>la</strong> Hirasawa. Electric transport and magn<strong>et</strong>icproperties in multi<strong>la</strong>yer graphene. Phys. Rev. B, vol. 77, no. 4, page045429, Jan 2008. (Cité en page 89.)[Nakamura 2008b] Masaaki Nakamura, Li<strong>la</strong> Hirasawa <strong>et</strong> Ken-Ichiro Imura. QuantumHall eect in bi<strong>la</strong>yer and multi<strong>la</strong>yer graphene with nite Fermi energy.Phys. Rev. B, vol. 78, no. 3, page 033403, Jul 2008. (Cité en page 89.)[Nanot 2009] Sébastien Nanot. These : Structure de bande <strong>et</strong> transport électroniquedans les nanotubes de carbone sous champ magnétique intense. 2009. (Citéen pages 36, 37 <strong>et</strong> 59.)[Niimi 2006] Y. Niimi, T. Matsui, H. Kambara, K. Tagami, M. Tsukada <strong>et</strong> HiroshiFukuyama. Scanning tunneling microscopy and spectroscopy of the electroniclocal density of states of graphite surfaces near monoatomic step edges. Phys.Rev. B, vol. 73, no. 8, page 085421, Feb 2006. (Cité en page 46.)

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