12 pags., 10 figs., 1 tab.Quantum variational optimization has been posed as an alternative to solve optimization problems faster and at a larger scale than what classical methods allow. In this paper we study systematically the role of entanglement, the structure of the variational quantum circuit, and the structure of the optimization problem, in the success and efficiency of these algorithms. For this purpose, our study focuses on the variational quantum eigensolver (VQE) algorithm, as applied to quadratic unconstrained binary optimization (QUBO) problems on random graphs with tunable density. Our numerical results indicate an advantage in adapting the distribution of entangling gates to the problem's topology, specially for problems def...
The inherent noise and complexity of quantum communication networks leads to challenges in designing...
This work studies the variational quantum eigensolver (VQE) algorithm, which is designed to determin...
This work studies the variational quantum eigensolver (VQE) algorithm, which is designed to determin...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest-or a few...
Variational quantum algorithms constitute one of the most widespread methods for using current noisy...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest--or a fe...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest--or a fe...
Many classical optimization problems can be mapped to finding the ground states of diagonal Ising Ha...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest--or a fe...
Quantum Computing leverages the quantum properties of subatomic matter to enable computations faster...
This work studies the variational quantum eigensolver algorithm, designed to determine the ground st...
The Quantum Approximate Optimization Algorithm (QAOA) is one of the promising near-term algorithms d...
Optimization is one of the research areas where quantum computing could bring significant benefits. ...
Applications such as simulating complicated quantum systems or solving large-scale linear algebra pr...
Quantum computing is a computational paradigm with the potential to outperform classical methods for...
The inherent noise and complexity of quantum communication networks leads to challenges in designing...
This work studies the variational quantum eigensolver (VQE) algorithm, which is designed to determin...
This work studies the variational quantum eigensolver (VQE) algorithm, which is designed to determin...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest-or a few...
Variational quantum algorithms constitute one of the most widespread methods for using current noisy...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest--or a fe...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest--or a fe...
Many classical optimization problems can be mapped to finding the ground states of diagonal Ising Ha...
Many quantum algorithms seek to output a specific bitstring solving the problem of interest--or a fe...
Quantum Computing leverages the quantum properties of subatomic matter to enable computations faster...
This work studies the variational quantum eigensolver algorithm, designed to determine the ground st...
The Quantum Approximate Optimization Algorithm (QAOA) is one of the promising near-term algorithms d...
Optimization is one of the research areas where quantum computing could bring significant benefits. ...
Applications such as simulating complicated quantum systems or solving large-scale linear algebra pr...
Quantum computing is a computational paradigm with the potential to outperform classical methods for...
The inherent noise and complexity of quantum communication networks leads to challenges in designing...
This work studies the variational quantum eigensolver (VQE) algorithm, which is designed to determin...
This work studies the variational quantum eigensolver (VQE) algorithm, which is designed to determin...