B. Altshuler (Columbia, NY) |
From single-particle to many-body localisation in disordered
systems. |
|
C. Bennett (IBM) |
I. Quantum computation and the physics of information processing.
II. Entanglement, communication, and cryptography. |
|
A. Briggs (Oxford) |
Spins in carbon nanomaterials for qubits. |
|
M. Buttiker (Geneve) |
I. Dynamics of quantum coherent capacitors.
II. Quantum shot noise correlations. |
|
V. Cheianov (Lancaster) |
Introduction to bosonisation and the Luttinger liquid model. |
|
J. von Delft (LMU Munchen) |
Kondo effect in metals and quantum dots. |
|
M. Dresselhaus (MIT) |
Physics of graphite and graphene - review. |
|
V. Falko (Lancaster) |
Introduction to graphene - theory. |
|
S. Flach (MPI-PKS, Dresden) |
Localizing energy through nonlinearity and discreteness. |
|
A. Geim (Manchester) |
Rise of graphene. |
|
B. Halperin (Harvard) |
Quantum Hall effects. |
|
A. Imamoglu (ETH, Zurich) |
Quantum optics in mesoscopic systems. |
|
M. Kastner (MIT) |
Kondo effect in quantum dots - experiment. |
|
V. Kravtsov (ICTP - Trieste) |
Localisation in random matrix theory models. |
|
I. Lerner (Birmingham) |
Functional bosonisation in application to impurity in the Luttinger
liquid. |
|
P. Littlewood (Cambridge) |
New condensates made of atoms and light. |
|
C. Marcus (Harvard)
| Nanoelectronics: spin qubit, noise measurements, and new materials. |
|
C. Marrows (Leeds) |
A trip to the spin-valve zoo. |
|
V. Meden (Gottingen) |
The functional renormalization group approach to quantum dots
and wires. |
|
W. Metzner (MPI-Stuttgart) |
Functional renormalization group for interacting fermions and
application to Luttinger liquids with impurities. |
|
H. Schomerus (Lancaster) |
Counting statistics of electrons and photons. |
|