Systems of linear equations are employed almost universally across a wide range of disciplines, from physics and engineering to biology, chemistry, and statistics. Traditional solution methods such as Gaussian elimination are very time consuming for large matrices, and more efficient computational methods are desired. In the twilight of Moore's Law, quantum computing is perhaps the most direct path out of the darkness. There are two complementary paradigms for quantum computing, namely, circuit-based systems and quantum annealers. In this paper, we express floating point operations, such as division and matrix inversion, in terms of a quadratic unconstrained binary optimization (QUBO) problem, a formulation that is ideal for a quantum annea...
Identifying computational tasks suitable for (future) quantum computers is an active field of resear...
The observation of an unequivocal quantum speedup remains an elusive objective for quantum computing...
We develop a quantum computer architecture using quantum statistics and thermal annealing that is hi...
To date, conventional computers have never been able to efficiently handle certain tasks, where the ...
To date, conventional computers have never been able to efficiently handle certain tasks, where the ...
Quantum computing is one of the most researched areas in computer science and withone of the greates...
The area of quantum computing is a relatively new and promising branch of computation that hopes to ...
The quantum approximate optimization algorithm (QAOA) by Farhi et al. is a quantum computational fra...
In recent years there has been a significant interest in exploring the potential of Quantum Annealer...
Quantum annealing is getting increasing attention in combinatorial optimization. The quantum process...
Quantum computing aims to harness the properties of quantum systems to more effectively solve certai...
Recent advances in the development of commercial quantum annealers such as the D-Wave 2X allow solvi...
We briefly review various computational methods for the solution of optimization problems. First, se...
In this paper, the maze generation using quantum annealing is proposed. We reformulate a standard al...
Quantum annealers such as D-Wave machines are designed to propose solutions for quadratic unconstrai...
Identifying computational tasks suitable for (future) quantum computers is an active field of resear...
The observation of an unequivocal quantum speedup remains an elusive objective for quantum computing...
We develop a quantum computer architecture using quantum statistics and thermal annealing that is hi...
To date, conventional computers have never been able to efficiently handle certain tasks, where the ...
To date, conventional computers have never been able to efficiently handle certain tasks, where the ...
Quantum computing is one of the most researched areas in computer science and withone of the greates...
The area of quantum computing is a relatively new and promising branch of computation that hopes to ...
The quantum approximate optimization algorithm (QAOA) by Farhi et al. is a quantum computational fra...
In recent years there has been a significant interest in exploring the potential of Quantum Annealer...
Quantum annealing is getting increasing attention in combinatorial optimization. The quantum process...
Quantum computing aims to harness the properties of quantum systems to more effectively solve certai...
Recent advances in the development of commercial quantum annealers such as the D-Wave 2X allow solvi...
We briefly review various computational methods for the solution of optimization problems. First, se...
In this paper, the maze generation using quantum annealing is proposed. We reformulate a standard al...
Quantum annealers such as D-Wave machines are designed to propose solutions for quadratic unconstrai...
Identifying computational tasks suitable for (future) quantum computers is an active field of resear...
The observation of an unequivocal quantum speedup remains an elusive objective for quantum computing...
We develop a quantum computer architecture using quantum statistics and thermal annealing that is hi...