most citedDetection of Single Electron Charging in an Individual InAs Quantum Dot by Noncontact Atomic Force Microscopy

119 citations · 120 across the 2 of their papers we have counts for

collaborators

12 papers

cond-mat.mes-hall2009

Silencing noisy 2DEG wafers

L. Gaudreau, A. Kam, P. Zawadzki +5

Telegraphic noise is one of the most significant problems that arises when making sensitive measurements with lateral electrostatic devices. In this paper we demonstrate that a waf…

cond-mat.mes-hall20097 cited

Microwave magnetoplasmon absorption by a 2DEG stripe

O. M. Fedorych, S. Moreau, M. Potemski +3

Microwave absorption by a high mobility 2DEG has been investigated experimentally using sensitive Electron Paramagnetic Resonance cavity technique. It is found that MW absorption s…

cond-mat.mes-hall200685 cited

Frequency quenching of microwave induced resistance oscillations in a high mobility two-dimensional electron gas

S. A. Studenikin, A. S. Sachrajda, J. A. Gupta +8

The frequency dependence of microwave-induced resistance oscillations (MIROs) has been studied experimentally in high-mobility electron GaAs/AlGaAs structures to explore the limits…

cond-mat.mes-hall2006

Stability Diagram of a Few-Electron Triple Dot

Louis Gaudreau, Sergei Studenikin, Andy Sachrajda +5

Quantum dots are considered building blocks for future quantum information circuits. We present here experimental results on a quantum dot circuit consisting of three quantum dots…

cond-mat.mes-hall2005

Electron spin-orbit splitting in InGaAs/InP quantum well studied by means of the weak antilocalization and spin-zero effects in tilted magnetic fields

S. A. Studenikin, P. T. Coleridge, G. Yu +1

The coupling between Zeeman spin splitting and Rashba spin-orbit terms has been studied experimentally in a gated InGaAs/InP quantum well structure by means of simultaneous measure…

cond-mat.mes-hall2005

The microwave induced resistance response of a high mobility 2DEG from the quasi-classical limit to the quantum Hall regime

S. A. Studenikin, M. Byszewski, D. K. Maude +6

Microwave induced resistance oscillations (MIROs) were studied experimentally over a very wide range of frequencies ranging from ~20 GHz up to ~4 THz, and from the quasi-classical…