Relativistic Brownian motion on a graphene chip
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[1] J. Tour,et al. Towards hybrid superlattices in graphene. , 2011, Nature communications.
[2] F. Nori,et al. Electronic properties of mesoscopic graphene structures: Charge confinement and control of spin and charge transport , 2011, 1104.2183.
[3] S. Savel'ev,et al. Massless Dirac fermions in a laser field as a counterpart of graphene superlattices , 2011, 1103.5983.
[4] Li Shi,et al. Two-Dimensional Phonon Transport in Supported Graphene , 2010, Science.
[5] SUPARNA DUTTASINHA,et al. Graphene: Status and Prospects , 2009, Science.
[6] Markus Müller,et al. Graphene: a nearly perfect fluid. , 2009, Physical review letters.
[7] A. Bostwick,et al. Friction and dissipation in epitaxial graphene films. , 2009, Physical review letters.
[8] S. Hilbert,et al. Non-local observables and lightcone-averaging in relativistic thermodynamics , 2009, 0902.4651.
[9] S. Mikhailov. Nonlinear cyclotron resonance of a massless quasiparticle in graphene , 2008, 0812.0855.
[10] Markus P. Mueller,et al. Quantum-critical relativistic magnetotransport in graphene , 2008, 0805.1413.
[11] P. Kim,et al. Quantum interference and Klein tunnelling in graphene heterojunctions , 2008, Nature Physics.
[12] F. Marchesoni,et al. Artificial Brownian motors: Controlling transport on the nanoscale , 2008, 0807.1283.
[13] F. Guinea,et al. The electronic properties of graphene , 2007, Reviews of Modern Physics.
[14] L. Muñoz,et al. ”QUANTUM THEORY OF SOLIDS” , 2009 .
[15] Peter Hanggi,et al. Relativistic Brownian Motion , 2008, 0812.1996.
[16] Feng Wang,et al. Gate-Variable Optical Transitions in Graphene , 2008, Science.
[17] P. Hänggi,et al. Thermal equilibrium and statistical thermometers in special relativity. , 2007, Physical review letters.
[18] K. Novoselov,et al. Cyclotron resonance study of the electron and hole velocity in graphene monolayers , 2007, 0704.0410.
[19] P. Kim,et al. Infrared spectroscopy of Landau levels of graphene. , 2007, Physical review letters.
[20] K. Efetov,et al. Electromagnetic-field-induced suppression of transport through n-p junctions in graphene. , 2007, Physical review letters.
[21] Andre K. Geim,et al. The rise of graphene. , 2007, Nature materials.
[22] K. Efetov,et al. Quantum dots in graphene. , 2007, Physical review letters.
[23] Gregoire Nicolis,et al. Stochastic resonance , 2007, Scholarpedia.
[24] M. I. Katsnelson,et al. Chiral tunnelling and the Klein paradox in graphene , 2006 .
[25] A. Geim,et al. Two-dimensional gas of massless Dirac fermions in graphene , 2005, Nature.
[26] P. Hänggi,et al. Nonlinear signal mixing in a ratchet device , 2004 .
[27] F. Nori,et al. Manipulating small particles in mixtures far from equilibrium. , 2004, Physical review letters.
[28] Franco Nori,et al. Controlling transport in mixtures of interacting particles using Brownian motors. , 2003, Physical review letters.
[29] P. Grieder. Chapter 3 – Cosmic Rays at Sea Level , 2001 .
[30] K. Mallick,et al. Relativistic Ornstein–Uhlenbeck Process , 1997 .
[31] F. Marchesoni. Harmonic mixing signal: doubly dithered ring laser gyroscope , 1986 .
[32] O. C. Allkofer,et al. Cosmic rays on earth. , 1984 .