Curator's Take
AI Commentary
This article shows that carefully engineered noise can be harnessed to generate entanglement between two superconducting qubits separated by a metre‑long cable, turning a traditional source of decoherence into a resource for quantum state preparation. The result builds on recent advances in reservoir engineering and modular quantum architectures, suggesting a new pathway to link distant processor nodes without the overhead of high‑fidelity microwave links or direct couplers. While still at the proof‑of‑concept stage, the approach could simplify scaling strategies for superconducting hardware if the technique can be made robust and tunable across larger networks.
— Mark Eatherly
Summary
Two superconducting qubits, a metre of cable apart, have been driven into an entangled state not in spite of their environment, but by it The post Noise that entangles may accelerate the dawn of quantum technologies appeared first on Physics World .