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观察双层石墨烯中谷-自旋耦合诱导的大自旋寿命各向异性。

Observation of Spin-Valley-Coupling-Induced Large Spin-Lifetime Anisotropy in Bilayer Graphene.

机构信息

Physics of Nanodevices, Zernike Institute for Advanced Materials, University of Groningen, 9747 AG Groningen, Netherlands.

Institute for Theoretical Physics, University of Regensburg, 93040 Regensburg, Germany.

出版信息

Phys Rev Lett. 2018 Sep 21;121(12):127702. doi: 10.1103/PhysRevLett.121.127702.

Abstract

We report the first observation of a large spin-lifetime anisotropy in bilayer graphene (BLG) fully encapsulated between hexagonal boron nitride. We characterize the out-of-plane (τ_{⊥}) and in-plane (τ_{∥}) spin lifetimes by oblique Hanle spin precession. At 75 K and the charge neutrality point (CNP), we observe a strong anisotropy of τ_{⊥}/τ_{∥}=8±2. This value is comparable to graphene-transition-metal-dichalcogenide heterostructures, whereas our high-quality BLG provides with τ_{⊥} up to 9 ns, a spin lifetime more than 2 orders of magnitude larger. The anisotropy decreases to 3.5±1 at a carrier density of n=6×10^{11}  cm^{-2}. Temperature-dependent measurements show above 75 K a decrease of τ_{⊥}/τ_{∥} with increasing temperature, reaching the isotropic case close to room temperature. We explain our findings with electric-field-induced spin-valley coupling arising from the small intrinsic spin-orbit fields in BLG of 12  μeV at the CNP.

摘要

我们首次观察到完全被六方氮化硼包裹的双层石墨烯(BLG)中的大自旋寿命各向异性。我们通过斜 Hanle 自旋进动来表征垂直于平面(τ_{⊥})和平面内(τ_{∥})的自旋寿命。在 75 K 和电荷中性点(CNP)处,我们观察到 τ_{⊥}/τ_{∥}=8±2 的强各向异性。这个值与石墨烯-过渡金属-二卤代物异质结构相当,而我们高质量的 BLG 提供了高达 9 ns 的 τ_{⊥},自旋寿命大了两个数量级以上。在载流子密度为 n=6×10^{11} cm^{-2}时,各向异性减小到 3.5±1。温度相关的测量结果表明,在 75 K 以上,τ_{⊥}/τ_{∥}随温度升高而降低,在接近室温时接近各向同性。我们用在 CNP 处 12 μeV 的小本征自旋轨道场引起的电场诱导自旋谷耦合来解释我们的发现。

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