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Publications

(Click here for a detailed list with a list of citing works)

Fractional quantum Hall effect at filling factor 5/2


Ganesh Jaya Sreejith, Csaba Tőke, Arkadiusz Wójs, and Jainendra K. Jain, “Bipartite Composite Fermion States”
Phys. Rev. Lett. 107, 086806 (2011).

Arkadiusz Wójs, Ganesh Jaya Sreejith, Gunnar Möller, Csaba Tőke, and Jainendra K. Jain, ”Composite Fermion Description of the Excitations of the Paired Pfaffian Fractional Quantum Hall State”
Acta Phys. Pol. A 120, 830 (2011).

Arkadiusz Wójs, Csaba Tőke, and Jainendra K. Jain, “Landau level mixing and the emergence of Pfaffian excitations for the 5/2 fractional quantum Hall effect”
Phys. Rev. Lett. 105, 096802 (2010).

Arkadiusz Wójs, Csaba Tőke, and Jainendra K. Jain, “Global phase diagram of the fractional quantum Hall effect for repulsive three body interaction”
Phys. Rev. Lett. 105, 196801 (2010).

Csaba Tőke, Nicolas Regnault, and Jainendra K. Jain, “Numerical studies of the Pfaffian model of the nu=5/2 fractional quantum Hall effect”
Solid State Comm. 144, 504 (2007).

Csaba Tőke, Nicolas Regnault, and Jainendra K. Jain, “Nature of the excitations of the 5/2 fractional quantum Hall effect”
Phys. Rev. Lett. 98, 036806 (2006).

Csaba Tőke and Jainendra K. Jain, “Understanding the 5/2 fractional quantum Hall effect without the Pfaffian wave function”
Phys. Rev. Lett. 96, 246805 (2006).

Fractional quantum Hall effect in graphene and multicomponent systems


Ajit C. Balram, Csaba Tőke, and Jainendra K. Jain, “Phase Diagram of Fractional Quantum Hall Effect of Composite Fermions in Multi-Component Systems”
arXiv:1410.7447.

Csaba Tőke and Jainendra K. Jain, “Multi-component fractional quantum Hall states in graphene: SU(4) versus SU(2)”
J. Phys.: Condens. Matter 24, 235601 (2012).

Csaba Tőke and Jainendra K. Jain, “Theoretical study of even denominator fractions in graphene: Fermi sea versus paired states of composite fermions”
Phys. Rev. B 76, 081403 (2007); Virtual Journal of Nanoscale Science and Technology 16, Issue 10 (September 3, 2007).

Csaba Tőke and Jainendra K. Jain, “SU(4) composite fermions in graphene: Fractional quantum Hall states without analog in GaAs”
Phys. Rev. B 75, 245440 (2007); Virtual Journal of Nanoscale Science and Technology 16, Issue 3 (July 16, 2007).

Csaba Tőke, Paul E. Lammert, Jainendra K. Jain, and Vincent H. Crespi, “Fractional quantum Hall effect in graphene”
Phys. Rev. B 74, 235417 (2006).

Interaction physics in bilayer and multilayer graphene


Csaba Tőke and Vladimir I. Fal'ko, “Charge-density-wave states in double-layer graphene structures at a high magnetic field”
Phys. Rev. B 90, 035404 (2014).

Csaba Tőke, “Particle-hole symmetry and bifurcating ground-state manifold in the quantum Hall ferromagnetic states of multilayer graphene”
Phys. Rev. B 88, 241411(R) (2013).

Judit Sári and Csaba Tőke, “Theory of inter-Landau level magnetoexcitons in bilayer graphene”
Phys. Rev. B 87, 085432 (2013).

Csaba Tőke and Vladimir I. Fal'ko, “Intra-Landau level magnetoexcitons in undoped bilayer graphene”
Phys. Rev. B 83, 115455 (2011).

Yonah Lemonik, Igor L. Aleiner, Csaba Tőke, and V.ladimir I. Fal'ko, “Spontaneous symmetry breaking and Lifshitz transition in bilayer graphene”
Phys. Rev. B 82, 201408 (2010).

Miscellaneous projects


Judit Sári, Csaba Tőke, and Mark O. Goerbig, “Magnetoplasmons of the tilted-anisotropic Dirac cone material α-(BEDT-TTF)2I3”
Phys. Rev. B 90, 155446 (2014).

Csaba Tőke and Jainendra K. Jain, “Change in the character of quasiparticles without gap collapse in a model of fractional quantum Hall effect”
Phys. Rev. B 80, 205301 (2009).

Michiel Snoek, Irakli Titvinidze, Csaba Tőke, Krzysztof Byczuk, and Walter Hofstetter, “Antiferromagnetic order of strongly interacting fermions in a trap: real-space dynamical mean-field analysis”
New J. Phys. 10, 093008 (2008).

Csaba Tőke, Chuntai Shi, and Jainendra K. Jain, “States of interacting composite fermions at the Landau level filling v=2+3/8”
Phys. Rev. B 77, 245305 (2008).

Chia Chen Chang, Csaba Tőke, Gun Sang Jeon, and Jainendra K. Jain, “Competition between composite fermion crystals and liquid orders”
Phys. Rev. B 73, 155323 (2006).

Csaba Tőke, Michael R. Peterson, Gun Sang Jeon, and Jainendra K. Jain, “Fractional quantum Hall efect in the second Landau level: The importance of inter-composite fermion interaction”
Phys. Rev. B 72, 125315 (2005).

György Szabó and Csaba Tőke, “Evolutionary prisoner's dilemma game on a square lattice”
Phys. Rev. E 58, 69 (1998).

Preprints

(Click here for a complete list)

Csaba Tőke and Vladimir I. Fal'ko “The effect of the electron-electron interaction on the Lifshitz transition density in bilayer graphene”
arXiv:0903.2435 (2011). Superseded by other publications.