The conductance of a microscopic junction shows fluctuations caused by quantum interference of waves that follow different paths between the leads. We give a semiclassical formula for these fluctuations. The theory utilizes trajectories which travel between the centers of the lead apertures; it also incorporates diffraction at these apertures. We extend the theory to include ‘‘ghost paths,’’ which scatter diffractively off the lead mouths. Semiclassical S-matrix elements are computed for a circular junction over a range of Fermi wave numbers, and the large-scale structure of these matrix elements shows good agreement with quantum results. Finally, we propose a hypothesis about the effect of the quantum coherence length on the S matrix and o...
We developed a formalism within the linear-response theory to investigate the transport through a qu...
A semiclassical description is given of charge transport through a superconductor-semiconductor inte...
The study of electron motion in semiconductor billiards has elucidated our understanding of quantum ...
The semiclassical theory of ballistic electron transport in semiconductor microstructures provides a...
peer reviewedThe conductance of a ballistic microstructure shows strong fluctuations as a function o...
We present a comparison between experiment and theory for the magnetoconductance autocorrelation fun...
peer reviewedWithin the semiclassical theory of magnetotransport through ballistic cavities, fluctua...
peer reviewedWe investigate electron transport through clean open quantum dots (quantum billiards). ...
peer reviewedWe present a semiclassical theory for transmission through open quantum billiards which...
In this Ph.D thesis the conductance fluctuations of different physical origins in semi-conductor nan...
This doctoral dissertation concerns electronic, nanoscale systems exhibiting coherence effects. Two ...
Recent developments in microfabrication technology have enabled the manufacture of semiconductor dev...
We consider the problem of a semiclassical description of quantum chaotic transport, when a tunnel b...
In this letter we propose and analyze a new semiconductor structure that can be fabricated by presen...
International audienceQuantum interferences in disordered mesoscopic insulators is already a quite l...
We developed a formalism within the linear-response theory to investigate the transport through a qu...
A semiclassical description is given of charge transport through a superconductor-semiconductor inte...
The study of electron motion in semiconductor billiards has elucidated our understanding of quantum ...
The semiclassical theory of ballistic electron transport in semiconductor microstructures provides a...
peer reviewedThe conductance of a ballistic microstructure shows strong fluctuations as a function o...
We present a comparison between experiment and theory for the magnetoconductance autocorrelation fun...
peer reviewedWithin the semiclassical theory of magnetotransport through ballistic cavities, fluctua...
peer reviewedWe investigate electron transport through clean open quantum dots (quantum billiards). ...
peer reviewedWe present a semiclassical theory for transmission through open quantum billiards which...
In this Ph.D thesis the conductance fluctuations of different physical origins in semi-conductor nan...
This doctoral dissertation concerns electronic, nanoscale systems exhibiting coherence effects. Two ...
Recent developments in microfabrication technology have enabled the manufacture of semiconductor dev...
We consider the problem of a semiclassical description of quantum chaotic transport, when a tunnel b...
In this letter we propose and analyze a new semiconductor structure that can be fabricated by presen...
International audienceQuantum interferences in disordered mesoscopic insulators is already a quite l...
We developed a formalism within the linear-response theory to investigate the transport through a qu...
A semiclassical description is given of charge transport through a superconductor-semiconductor inte...
The study of electron motion in semiconductor billiards has elucidated our understanding of quantum ...