diff --git a/content/corbino-conductance.png b/content/corbino-conductance.png index d8da7b1840938061d0ba3e31a4e826cb59713dd3..c7cdd33ec6ba01d6ec4f63cfb46fd1f50c5f57ce 100644 Binary files a/content/corbino-conductance.png and b/content/corbino-conductance.png differ diff --git a/content/index.txt b/content/index.txt index 5170c4cece65e459c4aa31916e17d2f8d0ec4ccf..cce01bada7570c12aa03f79d54fb6f02917774bb 100644 --- a/content/index.txt +++ b/content/index.txt @@ -74,15 +74,25 @@ rather subtle aspects of the experiments could be reproduce. Such type of but also as an aid in designing the sample geometry or in the choice of materials. - conductance of a Corbino disk in a quantum Hall regime ...................................................... .. container:: leftside - .. image:: corbino.png + .. image:: corbino-layout.svg + :width: 15em + + +.. container:: rightside + + .. image:: corbino-conductance.png + +Transport properties of a Corbino disk across a quantum Hall transition. Left: +geometry of the sample consisting of a ring-shaped two-dimensional electron gas +(grey) in a perpendicular magnetic field. Right: conductance across the +transition, showing quantized conductance peaks. -Transport properties of a Corbino disk across a quantum Hall transition. Left -panel: winding number of the reflection matrix, which has to change from 0 to 1 -across the transition. Right panel: conductance across the transition, showing -quantized conductance peaks. +Taken from I. C. Fulga, F. Hassler, A. R. Akhmerov, C. W. J. Beenakker, +`Phys. Rev. B 84, 245447 (2011) +<http://link.aps.org/doi/10.1103/PhysRevB.84.245447>`_; `arXiv:1110.4280 +<http://arxiv.org/abs/1110.4280>`_.