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20042012
most citedGraphene Antidot Lattices - Designed Defects and Spin Qubits

541 citations · 2.2k across the 22 of their papers we have counts for

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25 papers · 1 filter

cond-mat.mes-hall201263 cited

Electron Waiting Times in Non-Markovian Quantum Transport

Konrad H. Thomas, Christian Flindt

We formulate a quantum theory of electron waiting time distributions for charge transport in nano-structures described by non-Markovian generalized master equations. We illustrate…

cond-mat.mes-hall2011

Noise and Counting Statistics of a Single Electron Emitter: Theory

Mathias Albert, Christian Flindt, Markus Büttiker

We review the latest progress in understanding the fundamental noise properties of a coherent single electron emitter known as the mesoscopic capacitor. The system consists of a su…

cond-mat.mes-hall201095 cited

Factorial cumulants reveal interactions in counting statistics

Dania Kambly, Christian Flindt, Markus Büttiker

Full counting statistics concerns the stochastic transport of electrons in mesoscopic structures. Recently it has been shown that the charge transport statistics for non-interactin…

cond-mat.mes-hall2009166 cited

Electronic properties of graphene antidot lattices

Joachim A. Fuerst, Jesper G. Pedersen, Christian Flindt +4

Graphene antidot lattices constitute a novel class of nano-engineered graphene devices with controllable electronic and optical properties. An antidot lattice consists of a periodi…

cond-mat.mes-hall2009254 cited

Universal oscillations in counting statistics

Christian Flindt, Christian Fricke, Frank Hohls +4

Noise is a result of stochastic processes that originate from quantum or classical sources. Higher-order cumulants of the probability distribution underlying the stochastic events…

cond-mat.mes-hall200820 cited

The influence of charge detection on counting statistics

Alessandro Braggio, Christian Flindt, Tomas Novotny

We consider the counting statistics of electron transport through a double quantum dot with special emphasis on the dephasing induced by a nearby charge detector. The double dot is…