Solcore Solcore was born as a modular set of tools, written (almost) entirely in Python 3, to address some of the task we had to solve more often, such as fitting dark IV curves or luminescence decays. With time, however, it has evolved as a complete semiconductor solver able of modelling the optical and electrical properties of a wide range of solar cells, from quantum well devices to multi-junction solar cells. Please, visit Solcore's Documentation and check the Examples of the examples folder
We report a multi-purpose spectrum-on-demand light source (SOLS), conceived primarily but not exclus...
A user-friendly software SolCelSim is introduced for the simulation of the charge transport in a sol...
A numerical study of metal front contacts grid spacing for photovoltaic (PV) converter of relatively...
Solcore was born as a modular set of tools, written (almost) entirely in Python 3, to address some o...
Computational models can provide significant insight into the operation mechanisms and deficiencies ...
A multi-scale, python-based library for the modelling of solar cells and semiconductor materialsA mu...
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
Improvements in the quantum solver Added plot generation for LDOS Corrected an error in the paramete...
International audienceThis article presents Solis, a new modular, fast, and portable one-dimensional...
First releaseSLALOM (SoLAr CelL Multivariate OptiMizer) is a set of open-source Python programs impl...
Numerical study of metal front contacts grid spacing for photovoltaic (PV) devices is presented with...
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
Semiconductor solar cells are fundamentally quite simple devices. Semiconductors have the capacity t...
We report a multi-purpose spectrum-on-demand light source (SOLS), conceived primarily but not exclus...
A user-friendly software SolCelSim is introduced for the simulation of the charge transport in a sol...
A numerical study of metal front contacts grid spacing for photovoltaic (PV) converter of relatively...
Solcore was born as a modular set of tools, written (almost) entirely in Python 3, to address some o...
Computational models can provide significant insight into the operation mechanisms and deficiencies ...
A multi-scale, python-based library for the modelling of solar cells and semiconductor materialsA mu...
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
Improvements in the quantum solver Added plot generation for LDOS Corrected an error in the paramete...
International audienceThis article presents Solis, a new modular, fast, and portable one-dimensional...
First releaseSLALOM (SoLAr CelL Multivariate OptiMizer) is a set of open-source Python programs impl...
Numerical study of metal front contacts grid spacing for photovoltaic (PV) devices is presented with...
A multi-scale, python-based library for the modelling of solar cells and semiconductor material
Semiconductor solar cells are fundamentally quite simple devices. Semiconductors have the capacity t...
We report a multi-purpose spectrum-on-demand light source (SOLS), conceived primarily but not exclus...
A user-friendly software SolCelSim is introduced for the simulation of the charge transport in a sol...
A numerical study of metal front contacts grid spacing for photovoltaic (PV) converter of relatively...