The traveling salesman problem is a well-known example of computationally-hard combinatorial problem for classical machines. Here, we propose a novel variational quantum algorithm to solve it. The method is based on the preparation of two maximally entangled quantum registers whose correlations are assigned to different paths between pairs of cities. For (Formula presented) (Formula presented) cities, this encoding requires (Formula presented) (Formula presented) qubits and the solution to the problem is directly found in the correlation matrix of the two registers composing the overall trial state. As a proof-of-concept experiment, we implement this algorithm for generic problems with four cities on a reconfigurable room-temperature silicon photonic circuit with integrated photon-pair sources, used to initialize maximally entangled path-encoded single-photon states.
Resource-efficient variational quantum solver for the traveling salesman problem and its silicon photonics implementation / Baldazzi, A., Azzini, S., Pavesi, L.. - In: QUANTUM SCIENCE AND TECHNOLOGY. - ISSN 2058-9565. - 11:3(2026), pp. 035057-035057. [10.1088/2058-9565/ae8df2]
Resource-efficient variational quantum solver for the traveling salesman problem and its silicon photonics implementation
Baldazzi, Alessio;Azzini, Stefano;Pavesi, Lorenzo
2026-01-01
Abstract
The traveling salesman problem is a well-known example of computationally-hard combinatorial problem for classical machines. Here, we propose a novel variational quantum algorithm to solve it. The method is based on the preparation of two maximally entangled quantum registers whose correlations are assigned to different paths between pairs of cities. For (Formula presented) (Formula presented) cities, this encoding requires (Formula presented) (Formula presented) qubits and the solution to the problem is directly found in the correlation matrix of the two registers composing the overall trial state. As a proof-of-concept experiment, we implement this algorithm for generic problems with four cities on a reconfigurable room-temperature silicon photonic circuit with integrated photon-pair sources, used to initialize maximally entangled path-encoded single-photon states.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione



