Acoustic Waves Prolong Spin Coherence in Diamond Quantum Systems
Experiments demonstrate that sound waves can significantly extend the coherence time of silicon vacancy spins embedded in diamond. This addresses a major hurdle in quantum technologies, where solid-state electron spins are prone to decoherence due to fluctuations in their host material. The technique offers a practical route to improving quantum computing performance.
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The primary obstacle in solid-state quantum
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Original headline: “Sound Waves Extend Quantum Spin Coherence in Diamond.” Browse more stories.