We show that it is possible and rather efficient to compute at non-zero temperature the thermoelectric characteristics of Coulomb blockaded fractional quantum Hall islands, formed by two quantum point contacts inside of a Fabry–Pérot interferometer, using the conformal field theory partition functions for the chiral edge excitations. The oscillations of the thermopower with the variation of the gate voltage as well as the corresponding figure-of-merit and power factors, provide finer spectroscopic tools which are sensitive to the neutral multiplicities in the partition functions and could be used to distinguish experimentally between different universality classes sharing the same electric properties. We also propose a procedure for measuri...
Two-dimensional topological insulators, and in particular quantum Hall states, are characterized by ...
This research develops a theoretical model to explain the behaviour of the thermo-power in the quant...
Transport through edge channels is responsible for conduction in quantum Hall (QH) phases. Robust qu...
We show that it is possible and rather efficient to compute at non-zero temperature the thermoelectr...
AbstractWe show that it is possible and rather efficient to compute at non-zero temperature the ther...
AbstractWe show that it is possible and rather efficient to compute at non-zero temperature the ther...
Using the conformal field theory approach to the thermoelectric characteristics of fractional quantu...
Using the conformal field theory approach to the thermoelectric characteristics of fractional quantu...
AbstractUsing the conformal field theory approach to the thermoelectric characteristics of fractiona...
AbstractUsing the conformal field theory approach to the thermoelectric characteristics of fractiona...
We demonstrate that the differential magnetic susceptibility of a fractional quantum Hall disk, repr...
To determine the topological quantum numbers of fractional quantum Hall (FQH) states hosting counter...
To determine the topological quantum numbers of fractional quantum Hall (FQH) states hosting counter...
We study the linear thermoelectric response of a quantum dot embedded in a constriction of a quantum...
We study the linear thermoelectric response of a quantum dot embedded in a constriction of a quantum...
Two-dimensional topological insulators, and in particular quantum Hall states, are characterized by ...
This research develops a theoretical model to explain the behaviour of the thermo-power in the quant...
Transport through edge channels is responsible for conduction in quantum Hall (QH) phases. Robust qu...
We show that it is possible and rather efficient to compute at non-zero temperature the thermoelectr...
AbstractWe show that it is possible and rather efficient to compute at non-zero temperature the ther...
AbstractWe show that it is possible and rather efficient to compute at non-zero temperature the ther...
Using the conformal field theory approach to the thermoelectric characteristics of fractional quantu...
Using the conformal field theory approach to the thermoelectric characteristics of fractional quantu...
AbstractUsing the conformal field theory approach to the thermoelectric characteristics of fractiona...
AbstractUsing the conformal field theory approach to the thermoelectric characteristics of fractiona...
We demonstrate that the differential magnetic susceptibility of a fractional quantum Hall disk, repr...
To determine the topological quantum numbers of fractional quantum Hall (FQH) states hosting counter...
To determine the topological quantum numbers of fractional quantum Hall (FQH) states hosting counter...
We study the linear thermoelectric response of a quantum dot embedded in a constriction of a quantum...
We study the linear thermoelectric response of a quantum dot embedded in a constriction of a quantum...
Two-dimensional topological insulators, and in particular quantum Hall states, are characterized by ...
This research develops a theoretical model to explain the behaviour of the thermo-power in the quant...
Transport through edge channels is responsible for conduction in quantum Hall (QH) phases. Robust qu...