papers

Publications (6)

physics.ins-det2018

Production and Integration of the ATLAS Insertable B-Layer

B. Abbott, J. Albert, F. Alberti +373

During the shutdown of the CERN Large Hadron Collider in 2013-2014, an additional pixel layer was installed between the existing Pixel detector of the ATLAS experiment and a new, s…

hep-ex2013

Implications of LHCb measurements and future prospects

LHCb collaboration, A. Bharucha, I. I. Bigi +763

During 2011 the LHCb experiment at CERN collected 1.0 fb-1 of sqrt{s} = 7 TeV pp collisions. Due to the large heavy quark production cross-sections, these data provide unprecedente…

cond-mat.mes-hall2003

In-plane Magnetic Field Dependent Magnetoresistance of Gated Asymmetric Double Quantum Wells

Yu. Krupko, L. Smrcka, P. Vasek +3

We have investigated experimentally the magnetoresistance of strongly asymmetric double-wells. The structures were prepared by inserting a thin AlGaAs barrier into…

cond-mat.mes-hall2000

Magnetoresistance and electronic structure of asymmetric GaAs/AlGaAs double quantum wells in the in-plane/tilted magnetic field

O. N. Makarovskii, L. Smrcka, P. Vasek +3

Bilayer two-dimensional electron systems formed by a thin barrier in the GaAs buffer of a standard heterostructure were investigated by magnetotransport measurements. In magnetic f…

cond-mat.str-el2025

Kondo cloud conductance in cavity-coupled quantum dots with asymmetric barriers

D. Fossion, V. Champain, S. Mohapatra +9

The Kondo effect emerges when a localized spin is screened by conduction electrons, giving rise to a strongly-correlated many-body ground state. In this work, we investigate this p…

cond-mat.mes-hall2001

Novel critical field in magneto-resistance oscillation of 2DEG in asymmetric GaAs/AlGaAs double wells measured as a function of the in-plane magnetic field

P. Svoboda, Y. Krupko, L. Smrcka +3

We have investigated the magnetoresistance of strongly asymmetric double-well structures formed by a thin AlGaAs barrier grown far from the interface in the GaAs buffer of standard…