The past few years have witnessed a remarkable interest in the application of quantum computing for solving problems in quantum chemistry more efficiently than classical computers allow. Very recently, proof-of-principle experimental realizations have been reported. However, so far only the nonrelativistic regime (i.e., the Schrödinger equation) has been explored, while it is well known that relativistic effects can be very important in chemistry. We present a quantum algorithm for relativistic computations of molecular energies. We show how to efficiently solve the eigenproblem of the Dirac-Coulomb Hamiltonian on a quantum computer and demonstrate the functionality of the proposed procedure by numerical simulations of computations of the s...
This book presents a unified approach to modern relativistic theory of the electronic structure of a...
This dissertation contains four projects: transforming electronic structure Hamiltonian to approxima...
Several novel methods for performing calculations relevant to quantum chemistry on quantum computers...
International audienceThe past few years have witnessed a remarkable interest in the application of ...
Quantum computers are appealing for their ability to solve some tasks much faster than their classic...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Since its introduction one decade ago, the quantum algorithm for chemistry has been among the most a...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
The difficulty of simulating quantum systems, well known to quantum chemists, prompted the idea of q...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Superposition and entanglement are properties of the quantum nature that suggest the construction, p...
This dissertation concerns the development of quantum computing algorithms for solving electronic st...
Exact first-principles calculations of molecular properties are currently intractable because their ...
We report the first electronic structure calculation performed on a quantum computer without exponen...
This book presents a unified approach to modern relativistic theory of the electronic structure of a...
This dissertation contains four projects: transforming electronic structure Hamiltonian to approxima...
Several novel methods for performing calculations relevant to quantum chemistry on quantum computers...
International audienceThe past few years have witnessed a remarkable interest in the application of ...
Quantum computers are appealing for their ability to solve some tasks much faster than their classic...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Since its introduction one decade ago, the quantum algorithm for chemistry has been among the most a...
As we begin to reach the limits of classical computing, quantum computing has emerged as a technolog...
The difficulty of simulating quantum systems, well known to quantum chemists, prompted the idea of q...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Exact first-principles calculations of molecular properties are currently intractable because their ...
Superposition and entanglement are properties of the quantum nature that suggest the construction, p...
This dissertation concerns the development of quantum computing algorithms for solving electronic st...
Exact first-principles calculations of molecular properties are currently intractable because their ...
We report the first electronic structure calculation performed on a quantum computer without exponen...
This book presents a unified approach to modern relativistic theory of the electronic structure of a...
This dissertation contains four projects: transforming electronic structure Hamiltonian to approxima...
Several novel methods for performing calculations relevant to quantum chemistry on quantum computers...