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Kramers-degenerated NV+1~(13)C Spin Systems in Diamond: Analytical Description

机译:金刚石中Kramers变性的NV + 1〜(13)C自旋系统的分析说明

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Spin systems consisted of single electronic spin S=l of the NV center and nearby nuclear spins I=1/2 of ~(13)C atoms disposed in diamond lattice near the center can be used as a small register of a quantum computer or as a sensor of a magnetic field. At odd number of nuclear spins eigenvalues of the spin systems at zero external magnetic field are at least twofold degenerated (Kramers degeneration) due to time reversal invariance of the spin Hamiltonian. This degeneracy is lifted only by external magnetic field regardless of the presence of any electric (crystal) field which can also lift the degeneracy thus hindering measurement of the magnetic field. Therefore, the Kramers-degenerated spin systems can be very perspective for measurement of a local magnetic field by the NV-based single-spin quantum magnetometer. Here, we are considering analytically the simplest Kramers-degenerated spin system NV+1~(13)C consisting of a single electron spin S=l of the NV center coupled by hyperfine interaction with a single nuclear spin I=1/2 of ~(13)C atom disposed in arbitrary site of diamond lattice. Simple approximate analytical expressions are obtained for eigenvalues and eigenstates of the spin system.
机译:自旋系统由NV中心的单个电子自旋S = 1和位于中心附近钻石晶格中的〜(13)C原子的附近核自旋I = 1/2组成,可以用作量子计算机的小型寄存器或磁场传感器。由于自旋哈密顿量的时间反转不变性,在奇数个核自旋下,自旋系统在零外部磁场下的特征值至少退化了两倍(克拉默斯退化)。不管是否存在任何电场(晶体),这种退化都只能通过外部磁场来消除,而电场(晶体)也可以提升退化,从而阻碍了磁场的测量。因此,对于基于NV的单自旋量子磁力计测量局部磁场,Kramers退化的自旋系统可能是非常有前景的。在这里,我们正在分析中考虑最简单的Kramers退化的自旋系统NV + 1〜(13)C,该系统由超中心相互作用耦合的NV中心的单个电子自旋S = 1与〜的单个核自旋I = 1/2组成。 (13)C原子位于金刚石晶格的任意位置。对于自旋系统的特征值和本征态,可以获得简单的近似解析表达式。

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