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The kinetic transport of electrons through graphene magnetic barriers is studied theoretically in presence of an external time harmonic scalar potential. The transmission coefficients are calculated in the framework of the non-perturbative…

Mesoscale and Nanoscale Physics · Physics 2017-04-26 R. Biswas , S. Maiti , C. Sinha

Transport of massless Dirac fermions in graphene monolayers is analyzed in the presence of a combination of singular magnetic barriers and applied electrostatic potential. Extending a recently proposed (J Phys. Cond. Matt. Vol 21, 292204…

Mesoscale and Nanoscale Physics · Physics 2011-01-20 Manish Sharma , Sankalpa Ghosh

Van der Waals materials and their heterostructures offer a versatile platform for studying a variety of quantum transport phenomena due to their unique crystalline properties and the exceptional ability in tuning their electronic spectrum.…

Mesoscale and Nanoscale Physics · Physics 2019-08-05 P. Kumaravadivel , M. T. Greenaway , D. Perello , A. Berdyugin , J. Birkbeck , J. Wengraf , S. Liu , J. H. Edgar , A. K. Geim , L. Eaves , R. Krishna Kumar

We study the problem of Dirac fermion confinement in graphene in the presence of a perpendicular magnetic field B. We show, analytically and numerically, that confinement leads to anomalies in the electronic spectrum and to a magnetic field…

Strongly Correlated Electrons · Physics 2009-11-11 N. M. R. Peres , A. H. Castro Neto , F. Guinea

Magnetotransport underlines many important phenomena in condensed matter physics, such as the Hall effect and magnetoresistance (MR) effect. Thus far, most magnetotransport studies are based on bulk resistance measurements without direct…

Mesoscale and Nanoscale Physics · Physics 2025-11-11 C. Ding , M. L. Palm , K. Kohli , T. Taniguchi , K. Watanabe , C. L. Degen

We report on the observation and study of the magneto-ratchet effect in a graphene-based two-dimensional metamaterial formed by a graphite gate that is placed below a graphene monolayer and patterned with an array of triangular antidots. We…

We calculate the phonons in a graphene nanoconstriction(GNC) in the presence of a high current density. The Joule-heating, current-induced forces, and coupling to electrode phonons is evaluated using first principles nonequilibrium DFT-NEGF…

Mesoscale and Nanoscale Physics · Physics 2014-03-18 Tue Gunst , Jing-Tao Lü , Per Hedegård , Mads Brandbyge

We develop a theory for graphene magnetotransport in the presence of carrier spin polarization as induced, for example, by the application of an in-plane magnetic field ($B$) parallel to the 2D graphene layer. We predict a negative…

Mesoscale and Nanoscale Physics · Physics 2009-08-14 E. H. Hwang , S. Das Sarma

We analyze the transport properties of curved, three-dimensional graphite samples in strong magnetic fields. Focusing on a millimeter-scale graphite cylinder as a prototypical curved object, we perform longitudinal and Hall voltage…

Mesoscale and Nanoscale Physics · Physics 2024-07-22 N. Kunchur , S. Galeski , F. Menges , R. Wawrzyńczak , C. Felser , T. Meng , J. Gooth

Based on the time-dependent nonequilibrium Green's function method we investigate theoretically the time and spin-dependent transport through a graphene layer upon the application of a static bias voltage to the electrodes and a…

Mesoscale and Nanoscale Physics · Physics 2011-09-23 Kai-He Ding , Zhen-Gang Zhu , Jamal Berakdar

We present a theory predicting how the linear magnetotransport of a two-dimensional electron gas is modified by a passive electromagnetic cavity resonator where no real photons are injected nor created. For a cavity photon mode with…

Mesoscale and Nanoscale Physics · Physics 2018-11-06 Nicola Bartolo , Cristiano Ciuti

The in-plane resistivity, Hall resistivity and magnetization of graphite were investigated in pulsed magnetic fields applied along the \textit{c}-axis. The Hall resistivity approaches zero at around 53 T where the in-plane and out-of-plane…

Strongly Correlated Electrons · Physics 2015-05-07 Kazuto Akiba , Atsushi Miyake , Hiroshi Yaguchi , Akira Matsuo , Koichi Kindo , Masashi Tokunaga

A novel method for fast fabrication of mesoscopic multilayered graphene electronic devices utilizing nanoprobes to exfoliate graphite flakes is developed. The magnetoresistance of these devices exhibit pronounced Shubnikov-de Haas…

Mesoscale and Nanoscale Physics · Physics 2015-04-10 Christopher Coleman , Davie Mtsuko , Chris Botha , Somnath Bhattacharyyaa

Graphene on two dimensional (2D) noncommutative (NC) plane in the presence of a constant background magnetic field has been studied. To handel the gauge-invariance issue we start our analysis by a effective massles NC Dirac field theory…

High Energy Physics - Theory · Physics 2020-10-28 Aslam Halder

We have studied the transport properties of graphene grown on silicon side of SiC. Samples under study have been prepared by two different growth methods in two different laboratories. Magnetoresistance and Hall resistance have been…

Mesoscale and Nanoscale Physics · Physics 2015-06-11 P. Vasek , L. Smrcka , P. Svoboda , V. Jurka , M. Orlita , D. K. Maude , W. Strupinski , R. Stepniewski , R. Yakimova

Graphene on hexagonal boron-nitride (h-BN) is an atomically flat conducting system that is ideally suited for probing the effect of Zeeman splitting on electron transport. We demonstrate by magneto-transport measurements that a parallel…

Mesoscale and Nanoscale Physics · Physics 2016-08-24 F. Chiappini , S. Wiedmann , M. Titov , A. K. Geim , R. V. Gorbachev , E. Khestanova , A. Mishchenko , K. S. Novoselov , J. C. Maan , U. Zeitler

We report a multiband transport study of bilayer graphene at high carrier densities. Employing a poly(ethylene)oxide-CsClO$_4$ solid polymer electrolyte gate we demonstrate the filling of the high energy subbands in bilayer graphene samples…

Mesoscale and Nanoscale Physics · Physics 2015-05-28 Dmitri K. Efetov , Patrick Maher , Simas Glinskis , Philip Kim

Oscillatory magnetoresistance measurements on graphene have revealed a wealth of novel physics. These phenomena are typically studied at low currents. At high currents, electrons are driven far from equilibrium with the atomic lattice…

We predict unusual (for non-relativistic quantum mechanics) electron states in graphene, which are localized within a finite-width potential barrier. The density of localized states in the sufficiently high and/or wide graphene barrier…

Mesoscale and Nanoscale Physics · Physics 2007-12-11 V. A. Yampol'skii , S. E. Savel'ev , Franco Nori

Due to the static magnetic field, the conductivity for graphene becomes a dispersive and anisotropic tensor, which complicates most modeling methodologies. In this paper, a novel equivalent circuit model is proposed for graphene with the…

Optics · Physics 2015-12-22 Ying S. Cao , Li Jun Jiang , Albert E. Ruehli