Sound Waves Boost Qubit Coherence in Quantum Computing Research
Harvard researchers have demonstrated a novel method to enhance quantum information protection. By continuously surrounding diamond-based qubits with microscopic sound waves, they extended the coherence time of silicon-vacancy spins threefold. This breakthrough, published in Nature Physics, suggests phonons could enable more compact and reliable sound-based quantum networks on chips, advancing quantum computing capabilities.
Want more?
Open NewsSnap.ai for the full app experience, including audio, personalization, and more news tools.
Open NewsSnap.ai