The quantum approximate optimization algorithm/quantum alternating operator ansatz (QAOA) is a heuristic to find approximate solutions of combinatorial optimization problems. Most of the literature is limited to quadratic problems without constraints. However, many practically relevant optimization problems do have (hard) constraints that need to be fulfilled. In this article, we present a framework for constructing mixing operators that restrict the evolution to a subspace of the full Hilbert space given by these constraints. We generalize the “XY”-mixer designed to preserve the subspace of “one-hot” states to the general case of subspaces given by a number of computational basis states. We expose the underlying mathematical structure whic...
Quantum computers are expected to accelerate solving combinatorial optimization problems, including ...
The Quantum Approximate Optimization Algorithm, QAOA, uses a shallow depth quantum circuit to produc...
The quantum approximate optimization algorithm (QAOA) is considered to be one of the most promising ...
The quantum approximate optimization algorithm/quantum alternating operator ansatz (QAOA) is a heuri...
The quantum approximate optimization algorithm/quantum alternating operator ansatz (QAOA) is a heuri...
The next few years will be exciting as prototype universal quantum processors emerge, enabling the i...
In this tutorial we discuss the quantum alternating operator ansatz (QAOA), which is a variational a...
We introduce multiple parametrized circuit ans\"atze and present the results of a numerical study co...
The general quantum approximate optimization algorithm (QAOA) produces approximate solutions for co...
Combinatorial optimization problems on graphs have broad applications in science and engineering. Th...
Constrained optimization problems are ubiquitous in science and industry. Quantum algorithms have sh...
The Quantum Approximation Optimization Algorithm (QAOA) is one of the most promising applications fo...
We propose and study Th-QAOA (pronounced Threshold QAOA), a variation of the Quantum Alternating Ope...
Optimization problems are ubiquitous in but not limited to the sciences, engineering, and applied ma...
All major frameworks for programming Quantum Computers (Qiskit, Cirq, Rigetti) currently have optimi...
Quantum computers are expected to accelerate solving combinatorial optimization problems, including ...
The Quantum Approximate Optimization Algorithm, QAOA, uses a shallow depth quantum circuit to produc...
The quantum approximate optimization algorithm (QAOA) is considered to be one of the most promising ...
The quantum approximate optimization algorithm/quantum alternating operator ansatz (QAOA) is a heuri...
The quantum approximate optimization algorithm/quantum alternating operator ansatz (QAOA) is a heuri...
The next few years will be exciting as prototype universal quantum processors emerge, enabling the i...
In this tutorial we discuss the quantum alternating operator ansatz (QAOA), which is a variational a...
We introduce multiple parametrized circuit ans\"atze and present the results of a numerical study co...
The general quantum approximate optimization algorithm (QAOA) produces approximate solutions for co...
Combinatorial optimization problems on graphs have broad applications in science and engineering. Th...
Constrained optimization problems are ubiquitous in science and industry. Quantum algorithms have sh...
The Quantum Approximation Optimization Algorithm (QAOA) is one of the most promising applications fo...
We propose and study Th-QAOA (pronounced Threshold QAOA), a variation of the Quantum Alternating Ope...
Optimization problems are ubiquitous in but not limited to the sciences, engineering, and applied ma...
All major frameworks for programming Quantum Computers (Qiskit, Cirq, Rigetti) currently have optimi...
Quantum computers are expected to accelerate solving combinatorial optimization problems, including ...
The Quantum Approximate Optimization Algorithm, QAOA, uses a shallow depth quantum circuit to produc...
The quantum approximate optimization algorithm (QAOA) is considered to be one of the most promising ...