Articles with public access mandates - Klaus ZieglerLearn more
Not available anywhere: 1
Diffusion in Two-Dimensional Disordered Systems with Particle-Hole Symmetry
K Ziegler
Low Dimensional Physics and Gauge Principles: Matinyan's Festschrift, 276-285, 2013
Mandates: German Research Foundation
Available somewhere: 31
Properties of graphene: a theoretical perspective
DSL Abergel, V Apalkov, J Berashevich, K Ziegler, T Chakraborty
Advances in Physics 59 (4), 261-482, 2010
Mandates: German Research Foundation
Tunable band gap in hydrogenated quasi-free-standing graphene
D Haberer, DV Vyalikh, S Taioli, B Dora, M Farjam, J Fink, D Marchenko, ...
Nano letters 10 (9), 3360-3366, 2010
Mandates: Austrian Science Fund, German Research Foundation, Hungarian Scientific …
Robust transport properties in graphene
K Ziegler
Physical review letters 97 (26), 266802, 2006
Mandates: German Research Foundation
Dielectric function and plasmons in graphene
A Hill, SA Mikhailov, K Ziegler
Europhysics Letters 87 (2), 27005, 2009
Mandates: German Research Foundation
Superfluidity of dipole excitons in the presence of band gaps in two-layer graphene
OL Berman, RY Kezerashvili, K Ziegler
Physical Review B—Condensed Matter and Materials Physics 85 (3), 035418, 2012
Mandates: German Research Foundation
Surface acoustic wave propagation in graphene
P Thalmeier, B Dóra, K Ziegler
Physical Review B—Condensed Matter and Materials Physics 81 (4), 041409, 2010
Mandates: Hungarian Scientific Research Fund
Random-gap model for graphene and graphene bilayers
K Ziegler
Physical review letters 102 (12), 126802, 2009
Mandates: German Research Foundation
Diffusion in the random gap model of monolayer and bilayer graphene
K Ziegler
Physical Review B—Condensed Matter and Materials Physics 79 (19), 195424, 2009
Mandates: German Research Foundation
Valley symmetry breaking and gap tuning in graphene by spin doping
A Hill, A Sinner, K Ziegler
New Journal of Physics 13 (3), 035023, 2011
Mandates: German Research Foundation
Large fluctuations of the first detected quantum return time
R Yin, K Ziegler, F Thiel, E Barkai
Physical Review Research 1 (3), 033086, 2019
Mandates: German Research Foundation
Effect of the Coulomb interaction on the gap in monolayer and bilayer graphene
A Sinner, K Ziegler
Physical Review B—Condensed Matter and Materials Physics 82 (16), 165453, 2010
Mandates: German Research Foundation
Engineering of zeno dynamics in integrated photonics
Q Liu, W Liu, K Ziegler, F Chen
Physical Review Letters 130 (10), 103801, 2023
Mandates: National Natural Science Foundation of China
Superfluidity and collective properties of excitonic polaritons in gapped graphene in a microcavity
OL Berman, RY Kezerashvili, K Ziegler
Physical Review B—Condensed Matter and Materials Physics 86 (23), 235404, 2012
Mandates: German Research Foundation
Density of states in disordered graphene
K Ziegler, B Dóra, P Thalmeier
Physical Review B—Condensed Matter and Materials Physics 79 (23), 235431, 2009
Mandates: German Research Foundation, Hungarian Scientific Research Fund
Gaps and tails in graphene and graphane
B Dora, K Ziegler
New Journal of Physics 11 (9), 095006, 2009
Mandates: German Research Foundation, Hungarian Scientific Research Fund
Quantum diffusion in two-dimensional random systems with particle–hole symmetry
K Ziegler
Journal of Physics A: Mathematical and Theoretical 45 (33), 335001, 2012
Mandates: German Research Foundation
Optical conductivity of graphene in the presence of random lattice deformations
A Sinner, A Sedrakyan, K Ziegler
Physical Review B—Condensed Matter and Materials Physics 83 (15), 155115, 2011
Mandates: German Research Foundation
Ising instability of a Holstein phonon mode in graphene
K Ziegler, E Kogan, E Majernikova, S Shpyrko
Physical Review B—Condensed Matter and Materials Physics 84 (7), 073407, 2011
Mandates: German Research Foundation
Strain-induced quantum Hall phenomena of excitons in graphene
OL Berman, RY Kezerashvili, YE Lozovik, KG Ziegler
Scientific reports 12 (1), 2950, 2022
Mandates: US Department of Defense
Publication and funding information is determined automatically by a computer program