Excitons, or coupled electron-hole excitations, are important both for fundamental optical properties of materials as well as and for the functionality of materials in opto-electronic devices. Depending on the material they are created in, excitons can come in many forms, from Wannier–Mott excitons in inorganic semiconductors, to molecular Frenkel or bi-molecular charge-transfer excitons in disordered organic or biological heterostructures. This multitude of materials and exciton types poses tremendous challenges for ab initio modeling. Following a brief overview of typical ab initio techniques, we summarize our recent work based on Many-Body Green’s Functions Theory in the GW approximation and Bethe–Salpeter Equation (BSE) as a method appl...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We present a multiscale model based on Many-Body Green’s Function Theory in the GW approximation and...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...
The optical properties of a variety of materials have been calculated using a recently developed ab...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We present a multiscale model based on Many-Body Green’s Function Theory in the GW approximation and...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...
The optical properties of a variety of materials have been calculated using a recently developed ab...
Excitons are bound electron-hole pairs that dominate the optical response of semiconductors and insu...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...
By a combination of ab-initio computational techniques, based on density-functional theory, GW theor...