3rd Physics Institute and Research Center SCoPE, University of Stuttgart, 70569 Stuttgart, Germany.
Phys Rev Lett. 2012 May 18;108(20):200402. doi: 10.1103/PhysRevLett.108.200402. Epub 2012 May 15.
We study decoherence of a single nitrogen-vacancy (NV) center induced by the 13C nuclear spin bath of diamond. By comparing Hahn-Echo experiments on single and double-quantum transitions of the NV triplet ground state we demonstrate that this bath can be tuned into two different regimes. At low magnetic fields, the nuclei behave as a quantum bath which causes decoherence by entangling with the NV central spin. At high magnetic fields, the bath behaves as a source of classical magnetic field noise, which creates decoherence by imprinting a random phase on the NV central spin.
我们研究了金刚石中 13C 核自旋浴对单个氮空位(NV)中心的退相干。通过比较 NV 三重态基态的单量子和双量子跃迁的哈恩回波实验,我们证明了这种浴可以调谐到两种不同的模式。在低磁场下,核表现为量子浴,通过与 NV 中心自旋纠缠导致退相干。在高磁场下,浴表现为经典磁场噪声源,通过在 NV 中心自旋上印随机相位来产生退相干。