The rapid progress in quantum-optical experiments, especially in the field of cavity quantum electrodynamics and nanoplasmonics, allows one to substantially modify and control chemical and physical properties of atoms, molecules, and solids by strongly coupling to the quantized field. Alongside such experimental advances has been the recent development of ab initio approaches such as quantum electrodynamical density-functional theory (QEDFT), which is capable of describing these strongly coupled systems from first principles. To investigate response properties of relatively large systems coupled to a wide range of photon modes, ab initio methods that scale well with system size become relevant. In light of this, we extend the linear-respons...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
We introduce a simple scheme to efficiently compute photon exchange-correlation contributions due to...
We present an ab initio correlated approach to study molecules that interact strongly with quantum f...
The rapid progress in quantum-optical experiments, especially in the field of cavity quantum electro...
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 derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
Strong light–matter coupling provides a promising path for the control of quantum matter where the l...
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...
We present a first-principles approach to electronic many-body systems strongly coupled to cavity mo...
We introduce linear-response theory for non-relativistic quantum-electrodynamics in the long wavelen...
By applying the Born-Huang expansion, originally developed for coupled nucleus-electron systems, to ...
By applying the Born-Huang expansion, originally developed for coupled nucleus-electron systems, to ...
Strong light-matter coupling provides a promising path for the control of quantum matter where the l...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
We introduce a simple scheme to efficiently compute photon exchange-correlation contributions due to...
We present an ab initio correlated approach to study molecules that interact strongly with quantum f...
The rapid progress in quantum-optical experiments, especially in the field of cavity quantum electro...
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 derive the full linear-response theory for nonrelativistic quantum electrodynamics in the long wa...
Strong light–matter coupling provides a promising path for the control of quantum matter where the l...
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...
We present a first-principles approach to electronic many-body systems strongly coupled to cavity mo...
We introduce linear-response theory for non-relativistic quantum-electrodynamics in the long wavelen...
By applying the Born-Huang expansion, originally developed for coupled nucleus-electron systems, to ...
By applying the Born-Huang expansion, originally developed for coupled nucleus-electron systems, to ...
Strong light-matter coupling provides a promising path for the control of quantum matter where the l...
In this article, we review strong light-matter coupling at the interface of materials science, quant...
We introduce a simple scheme to efficiently compute photon exchange-correlation contributions due to...
We present an ab initio correlated approach to study molecules that interact strongly with quantum f...