论文标题

主动自旋晶格超极化:应用于六角形硝化硼颜色中心

Active spin lattice hyperpolarization: Application to hexagonal boron nitride color centers

论文作者

Tabesh, F. T., Fani, M., Pedernales, J. S., Plenio, M. B., Abdi, M.

论文摘要

颜色中心的电子自旋的主动驱动被称为周围核自旋浴的超极化的方法,并初始化了大量自旋的系统。在这里,我们研究了这种方法在一维的海森堡链中与中央自旋结合的一维的海森堡链中各种自旋耦合方案的效率。为了将我们的研究扩展到具有大量相互作用旋转的现实​​系统,我们采用了基于Holstein-Primakoff转换的近似方法。描述自旋极化动力学的方法的有效性是由小晶格的精确数字基准的,在该晶格中,确认了Bosonic Holstein-Primakoff近似方法的准确性。因此,我们将分析扩展到确切的数值无法触及的较大的自旋系统。当与自旋浴的中央自旋相互作用是长距离且浴旋转中的旋转间相互作用足够大时,结果证明了活动驱动方法的效率。然后将该方法应用于六角形硝化硼的光学主动造成负电荷空位中心($ v_b $)的现实情况。我们的结果表明,即使是从完全的热浴开始,也可以实现硼和氮核自旋晶格的高极化。作为初始化,我们的工作提供了基于天然核自旋的二维量子模拟器迈向实现二维量子模拟器的第一步,这对于延长$ V_B $中心的连贯时间而言可能很有用。

The active driving of the electron spin of a color center is known as a method for the hyperpolarization of the surrounding nuclear spin bath and to initialize a system with large number of spins. Here, we investigate the efficiency of this approach for various spin coupling schemes in a one-dimensional Heisenberg chain coupled to a central spin. To extend our study to the realistic systems with a large number of interacting spins, we employ an approximate method based on Holstein-Primakoff transformation. The validity of the method for describing spin polarization dynamics is benchmarked by the exact numerics for a small lattice, where the accuracy of the bosonic Holstein-Primakoff approximation approach is confirmed. We, thus, extend our analysis to larger spin systems where the exact numerics are out of reach. The results prove the efficiency of the active driving method when the central spin interaction with the spin bath is long range and the inter-spin interactions in the bath spins is large enough. The method is then applied to the realistic case of optically active negatively charged boron vacancy centers ($V_B$) in hexagonal boron nitride. Our results suggest that a high degree of hyperpolarization in the boron and nitrogen nuclear spin lattices is achievable even starting from a fully thermal bath. As an initialization, our work provides the first step toward the realization of a two-dimensional quantum simulator based on natural nuclear spins and it can prove useful for extending the coherence time of the $V_B$ centers.

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