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      Germanium Vacancy in Diamond Quantum Memory Exceeding 20 ms

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          Abstract

          Negatively charged group IV defects in diamond show great potential as quantum network nodes due to their efficient spin-photon interface. However, reaching sufficiently long coherence times remains a challenge. In this work, we demonstrate coherent control of germanium-vacancy center (GeV) at millikelvin temperatures and extend its coherence time by several orders of magnitude to more than 20 ms. We model the magnetic and amplitude noise as an Ornstein-Uhlenbeck process, reproducing the experimental results well. The utilized method paves the way to optimized coherence times of group IV defects in various experimental conditions and their successful applications in quantum technologies.

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          Journal
          18 August 2023
          Article
          2308.09666
          8e0e6f87-756d-4976-b196-c222a37364e9

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          quant-ph

          Quantum physics & Field theory
          Quantum physics & Field theory

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