International audienceWe report on a "source-sink" algorithm which allows one to calculate time-resolved physical quantities from a general nanoelectronic quantum system (described by an arbitrary time-dependent quadratic Hamiltonian) connected to infinite electrodes. Although mathematically equivalent to the non equilibrium Green's function formalism, the approach is based on the scattering wave functions of the system. It amounts to solving a set of generalized Schrödinger equations which include an additional "source" term (coming from the time dependent perturbation) and an absorbing "sink" term (the electrodes). The algorithm execution time scales linearly with both system size and simulation time allowing one to simulate large systems...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
In this work we put forward an exact one-particle framework to study nanoscale Josephson junctions o...
International audienceWe report on a "source-sink" algorithm which allows one to calculate time-reso...
International audienceWe report on a "source-sink" algorithm which allows one to calculate time-reso...
Numerical simulation has become a major tool in quantum electronics both for fundamental and applied...
International audienceNumerical simulation has become a major tool in quantum electronics both for f...
This paper reviews the general concepts for building algorithms to solve the time-dependent Schrödin...
This paper reviews the general concepts for building algorithms to solve the time-dependent Schrödin...
We present results on the microscopic dynamics of electrons in nanoscale systems coupled to supercon...
The purpose of this lecture is to introduce the general concepts for building algorithms to solve th...
The purpose of this lecture is to introduce the general concepts for building algorithms to solve th...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
In this work we put forward an exact one-particle framework to study nanoscale Josephson junctions o...
International audienceWe report on a "source-sink" algorithm which allows one to calculate time-reso...
International audienceWe report on a "source-sink" algorithm which allows one to calculate time-reso...
Numerical simulation has become a major tool in quantum electronics both for fundamental and applied...
International audienceNumerical simulation has become a major tool in quantum electronics both for f...
This paper reviews the general concepts for building algorithms to solve the time-dependent Schrödin...
This paper reviews the general concepts for building algorithms to solve the time-dependent Schrödin...
We present results on the microscopic dynamics of electrons in nanoscale systems coupled to supercon...
The purpose of this lecture is to introduce the general concepts for building algorithms to solve th...
The purpose of this lecture is to introduce the general concepts for building algorithms to solve th...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
Recent technical progress in the field of quantum nanoelectronics have lead toexciting new experimen...
In this work we put forward an exact one-particle framework to study nanoscale Josephson junctions o...