Variational methods offer a highly promising route to exploiting quantum computers for chemistry tasks. Here we employ methods described in a sister paper to the present report, entitled exploring ab initio machine synthesis of quantum circuits, in order to solve problems using adaptively evolving quantum circuits. Consistent with prior authors we find that this approach can outperform human-designed circuits such as the coupled-cluster or hardware-efficient ansätze, and we make comparisons for larger instances up to 14 qubits Moreover we introduce a novel approach to constraining the circuit evolution in the physically relevant subspace, finding that this greatly improves performance and compactness of the circuits. We consider both static...
Many quantum algorithms have daunting resource requirements when compared to what is available today...
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...
Variational quantum algorithms (VQAs) are promising methods to demonstrate quantum advantage on near...
Variational methods offer a highly promising route to exploiting quantum computers for chemistry tas...
Variational methods offer a highly promising route to exploiting quantum computers for chemistry tas...
One of the first practical applications of quantum computers is expected to be molecular modelling. ...
Gate-level quantum circuits are often derived manually from higher level algorithms. While this suff...
Current quantum computing hardware is restricted by the availability of only few, noisy qubits which...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
Gate-level quantum circuits are often derived manually from higher level algorithms. While this suff...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
Gate-level quantum circuits are often derived manually from higher level algorithms. While this suff...
Abstract: Molecular simulations with the variational quantum eigensolver (VQE) are a promising appli...
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...
Many quantum algorithms have daunting resource requirements when compared to what is available today...
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...
Variational quantum algorithms (VQAs) are promising methods to demonstrate quantum advantage on near...
Variational methods offer a highly promising route to exploiting quantum computers for chemistry tas...
Variational methods offer a highly promising route to exploiting quantum computers for chemistry tas...
One of the first practical applications of quantum computers is expected to be molecular modelling. ...
Gate-level quantum circuits are often derived manually from higher level algorithms. While this suff...
Current quantum computing hardware is restricted by the availability of only few, noisy qubits which...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
Gate-level quantum circuits are often derived manually from higher level algorithms. While this suff...
The design of new materials and chemicals derived entirely from computation has long been a goal of ...
Quantum computers exist today that are capable of performing calculations that challenge the largest...
Gate-level quantum circuits are often derived manually from higher level algorithms. While this suff...
Abstract: Molecular simulations with the variational quantum eigensolver (VQE) are a promising appli...
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...
Many quantum algorithms have daunting resource requirements when compared to what is available today...
Molecular simulations with the variational quantum eigensolver (VQE) are a promising application for...
Variational quantum algorithms (VQAs) are promising methods to demonstrate quantum advantage on near...