We present a first-principles approach to electronic many-body systems strongly coupled to cavity modes in terms of matter–photon one-body reduced density matrices. The theory is fundamentally nonperturbative and thus captures not only the effects of correlated electronic systems but accounts also for strong interactions between matter and photon degrees of freedom. We do so by introducing a higher-dimensional auxiliary system that maps the coupled fermion-boson system to a dressed fermionic problem. This reformulation allows us to overcome many fundamental challenges of density-matrix theory in the context of coupled fermion-boson systems and we can employ conventional reduced density-matrix functional theory developed for purely fermionic...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
By applying the Born-Huang expansion, originally developed for coupled nucleus-electron systems, to ...
In this work, we provide an overview of how well-established concepts in the fields of quantum chemi...
A reduced-density-matrix (RDM)-based approach to {\em ab initio} cavity quantum electrodynamics (QED...
For certain correlated electron-photon systems we construct the exact density-to-potential maps, whi...
In this work, we provide an overview of how well-established concepts in the fields of quantum chemi...
We derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
A detailed understanding of strong matter-photon interactions requires first-principle methods that ...
We derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
We derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
By applying the Born-Huang expansion, originally developed for coupled nucleus-electron systems, to ...
In this work, we provide an overview of how well-established concepts in the fields of quantum chemi...
A reduced-density-matrix (RDM)-based approach to {\em ab initio} cavity quantum electrodynamics (QED...
For certain correlated electron-photon systems we construct the exact density-to-potential maps, whi...
In this work, we provide an overview of how well-established concepts in the fields of quantum chemi...
We derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
A detailed understanding of strong matter-photon interactions requires first-principle methods that ...
We derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
We derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
We develop coupled-cluster theory for systems of electrons strongly coupled to photons, providing a ...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
By applying the Born-Huang expansion, originally developed for coupled nucleus-electron systems, to ...