The Potts model is a generalization of the Ising model with $Q>2$ components. In the fully connected ferromagnetic Potts model, a first-order phase transition is induced by varying thermal fluctuations. Therefore, the computational time required to obtain the ground states by simulated annealing exponentially increases with the system size. This study analytically confirms that the transverse magnetic-field quantum annealing induces a first-order phase transition. This result implies that quantum annealing does not exponentially accelerate the ground-state search of the ferromagnetic Potts model. To avoid the first-order phase transition, we propose an iterative optimization method using a half-hot constraint that is applicable to both quan...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
In recent years, quantum annealing has gained the status of being a promising candidate for solving ...
We developed a non-Hermitian quantum optimization algorithm to find the ground state of the ferromag...
Quantum annealing is a heuristic algorithm for searching the ground state of an Ising model. Heurist...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrödinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrödinger dynamics) and simulated ann...
In this review, after providing the basic physical concept behind quantum annealing (or adiabatic qu...
We perform an in-depth comparison of quantum annealing with several classical optimisation technique...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
In recent years, quantum annealing has gained the status of being a promising candidate for solving ...
We developed a non-Hermitian quantum optimization algorithm to find the ground state of the ferromag...
Quantum annealing is a heuristic algorithm for searching the ground state of an Ising model. Heurist...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrodinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrödinger dynamics) and simulated ann...
We compare the performance of quantum annealing (QA, through Schrödinger dynamics) and simulated ann...
In this review, after providing the basic physical concept behind quantum annealing (or adiabatic qu...
We perform an in-depth comparison of quantum annealing with several classical optimisation technique...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
We study the performance of quantum annealing for two sets of problems, namely, 2-satisfiability (2-...
In recent years, quantum annealing has gained the status of being a promising candidate for solving ...
We developed a non-Hermitian quantum optimization algorithm to find the ground state of the ferromag...