International audienceWe explore the possibility to perform symmetry restoration with the variation after projection technique on a quantum computer followed by additional postprocessing. The final goal is to develop configuration interaction techniques based on many-body trial states preoptimized on a quantum computer. We show how the projection method used for symmetry restoration can prepare optimized states that could then be employed as initial states for quantum or hybrid quantum-classical algorithms. We use the quantum phase estimation and the quantum Krylov approaches for the postprocessing. The latter method combined with the quantum variation after projection leads to very fast convergence toward the ground-state energy. The possi...
Ab initio electronic excited state calculations are necessary for the quantitative study of photoche...
The Symmetry-Breaking/Symmetry-Restoration methodology is a well-established tool in many-body physi...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
We present a new method to perform variation after projection in many-body systems on quantum comput...
International audienceStarting from the quantum-phase-estimate (QPE) algorithm, a method is proposed...
We discuss here some aspects related to symmetries of a quantum many-body problem when trying to tre...
International audienceThe possibility of using the generator coordinate method (GCM) using hybrid qu...
Preparing the ground state of a system of interacting classical particles is an NP-hard problem. Thu...
Preparing the ground state of a system of interacting classical particles is an NP-hard problem. Thu...
The generating function of a Hamiltonian $H$ is defined as $F(t)=\langle e^{-itH}\rangle$, where $t$...
The search problem is to find a state satisfying certain properties out of a given set. Grover's alg...
Over the last century, a large number of physical and mathematical developments paired with rapidly ...
We revisit quantum phase estimation algorithms for the purpose of obtaining the energy levels of man...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...
Quantum computers promise to efficiently solve important problems that are intractable on a conventi...
Ab initio electronic excited state calculations are necessary for the quantitative study of photoche...
The Symmetry-Breaking/Symmetry-Restoration methodology is a well-established tool in many-body physi...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...
We present a new method to perform variation after projection in many-body systems on quantum comput...
International audienceStarting from the quantum-phase-estimate (QPE) algorithm, a method is proposed...
We discuss here some aspects related to symmetries of a quantum many-body problem when trying to tre...
International audienceThe possibility of using the generator coordinate method (GCM) using hybrid qu...
Preparing the ground state of a system of interacting classical particles is an NP-hard problem. Thu...
Preparing the ground state of a system of interacting classical particles is an NP-hard problem. Thu...
The generating function of a Hamiltonian $H$ is defined as $F(t)=\langle e^{-itH}\rangle$, where $t$...
The search problem is to find a state satisfying certain properties out of a given set. Grover's alg...
Over the last century, a large number of physical and mathematical developments paired with rapidly ...
We revisit quantum phase estimation algorithms for the purpose of obtaining the energy levels of man...
The accurate and efficient simulation of many body systems has been a long-standing challenge for qu...
Quantum computers promise to efficiently solve important problems that are intractable on a conventi...
Ab initio electronic excited state calculations are necessary for the quantitative study of photoche...
The Symmetry-Breaking/Symmetry-Restoration methodology is a well-established tool in many-body physi...
Conventional computers are invaluable tools for analysing and predicting the behaviour of the world ...