The superconductor-insulator transition (SIT) is a prototype of a
??quantum phase transition which is very versatile experimentally:
??varying a non-thermal tuning parameter such as disorder, thickness,
??composition, magnetic field or gate-voltage causes the system to
??switch from a superconductor to an insulator at zero temperature.
Unlike their classic counterparts, quantum phase transitions are
??governed by quantum fluctuations rather than thermal fluctuations.
?The ??direct experimental study of such fluctuations close to the SIT
?is ??rather challenging. So far research has mainly concentrated on
dc ??resistivity based measurements such as transport and
?magnetoresistance ??and on global and local tunneling spectroscopy.
?These provide only ??limited information on the critical behavior
?through the transition.
In my talk I will describe experimental efforts designed to
??measure direct signatures of quantum fluctuations close to quantum
??criticality. These include specific heat of ultrathin
superconducting ??films, scanning squid measurements of local quantum
fluctuations and ??Nernst effect experiments on highly disordered
films. I will discuss ??the significance of the results and their
contribution to ??understanding the electronic processes in the
vicinity of the quantum ??phase transition. |