论文标题

碳化硅中的超精致偶联钒杂质的相干自旋动力学

Coherent spin dynamics of hyperfine-coupled vanadium impurities in silicon carbide

论文作者

Hendriks, Joop, Gilardoni, Carmem M., Adambukulam, Chris, Laucht, Arne, van der Wal, Caspar H.

论文摘要

量子技术的进步很大程度上是在钻石的氮散布中心实现的。然而,它的一部分是非理想的,这推动了对其他自旋活性晶体缺陷的研究。其中一些具有更强的能量尺度,用于自旋轨道和超精细耦合,但是很少探索这对它们的旋转相干性。碳化硅中的钒是这样的系统,具有在电信波长下的光学发射以及与半导体行业兼容的技术兴趣。在这里,我们显示了围绕时钟过渡的钒缺陷集合的连贯的自旋动力学,并在与邻近的核自旋隔离或耦合时进行了研究。我们发现旋转倾向的时间高达7.2 $μ$,并且通过自旋回波研究相干寿命,这些寿命远远超出了数十微秒。我们证明了与邻近核自旋的强耦合不会损害中央钒自旋的连贯性的操作点,这表明如何将它们应用于相干自旋寄存器。我们的发现与了解具有相似能量尺度和晶体对称性的广泛缺陷有关,这些缺陷目前正在钻石,碳化硅和六角硼硝化物中进行探索。

Progress with quantum technology has for a large part been realized with the nitrogen-vacancy centre in diamond. Part of its properties, however, are nonideal and this drives research into other spin-active crystal defects. Several of these come with much stronger energy scales for spin-orbit and hyperfine coupling, but how this affects their spin coherence is little explored. Vanadium in silicon carbide is such a system, with technological interest for its optical emission at a telecom wavelength and compatibility with semiconductor industry. Here we show coherent spin dynamics of an ensemble of vanadium defects around a clock-transition, studied while isolated from, or coupled to neighbouring nuclear spins. We find spin dephasing times up to 7.2 $μ$s, and via spin-echo studies coherence lifetimes that go well beyond tens of microseconds. We demonstrate operation points where strong coupling to neighbouring nuclear spins does not compromise the coherence of the central vanadium spin, which identifies how these can be applied as a coherent spin register. Our findings are relevant for understanding a wide class of defects with similar energy scales and crystal symmetries, that are currently explored in diamond, silicon carbide, and hexagonal boron nitride.

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