Ab initio electronic excited state calculations are necessary for the quantitative study of photochemical reactions, but their accurate computation on classical computers is plagued by prohibitive resource scaling. The Variational Quantum Deflation (VQD) is an extension of the quantum-classical Variational Quantum Eigensolver (VQE) algorithm for calculating electronic excited state energies, and has the potential to address some of these scaling challenges using quantum computers. However, quantum computers available in the near term can only support a limited number of quantum circuit operations, so reducing the quantum computational cost in VQD methods is critical to their realisation. In this work, we investigate the use of adaptive quan...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Utilizing quantum computer to investigate quantum chemistry is an important research field nowadays....
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...
Ab initio electronic excited state calculations are necessary for the quantitative study of photoche...
Solving for molecular excited states remains one of the key challenges of modern quantum chemistry. ...
One of the first practical applications of quantum computers is expected to be molecular modelling. ...
Computational chemistry has advanced rapidly in the last decade on the back of the progress of incre...
Harnessing the full power of nascent quantum processors requires the efficient management of a limit...
Harnessing the full power of nascent quantum processors requires the efficient management of a limit...
We propose an excited-state molecular dynamics simulation method based on variational quantum algori...
Excited state properties play a pivotal role in various chemical and physical phenomena, such as cha...
Harnessing the full power of nascent quantum processors requires the efficient management of a limit...
The variational quantum eigensolver (VQE) is one of the most appealing quantum algorithms to simulat...
We report the first electronic structure calculation performed on a quantum computer without exponen...
Quantum Chemistry (QC) is one of the most promising applications of Quantum Computing. However, pres...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Utilizing quantum computer to investigate quantum chemistry is an important research field nowadays....
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...
Ab initio electronic excited state calculations are necessary for the quantitative study of photoche...
Solving for molecular excited states remains one of the key challenges of modern quantum chemistry. ...
One of the first practical applications of quantum computers is expected to be molecular modelling. ...
Computational chemistry has advanced rapidly in the last decade on the back of the progress of incre...
Harnessing the full power of nascent quantum processors requires the efficient management of a limit...
Harnessing the full power of nascent quantum processors requires the efficient management of a limit...
We propose an excited-state molecular dynamics simulation method based on variational quantum algori...
Excited state properties play a pivotal role in various chemical and physical phenomena, such as cha...
Harnessing the full power of nascent quantum processors requires the efficient management of a limit...
The variational quantum eigensolver (VQE) is one of the most appealing quantum algorithms to simulat...
We report the first electronic structure calculation performed on a quantum computer without exponen...
Quantum Chemistry (QC) is one of the most promising applications of Quantum Computing. However, pres...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Utilizing quantum computer to investigate quantum chemistry is an important research field nowadays....
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...