论文标题
在化学蒸气沉积的石墨烯层和边界中与各向同性自旋动力学的稳健自旋互连
Robust Spin Interconnect with Isotropic Spin Dynamics in Chemical Vapour Deposited Graphene Layers and Boundaries
论文作者
论文摘要
化学蒸气沉积(CVD)生长的大面积石墨烯的利用对于在全旋转内存和逻辑电路中的可扩展自旋互连的发展至关重要。但是,尚未解决多层石墨烯斑块的存在及其对自旋动力学上的边界的基本影响,这对于强大的自旋互连的基本理解和应用是必不可少的。在这里,我们报告了特殊设计的单层,双层和三层石墨烯通道中的通用自旋传输和动态特性及其通常存在于CVD石墨烯样品中的层边界和褶皱。我们观察到均匀的自旋寿命,以及各向同性自旋松弛的旋转,用于在室温下具有不同方向及其边界不同方向的自旋。在所有不均匀的石墨烯通道中,旋转寿命各向异性的旋转各向异性比率是偏振面外和面内的,以接近统一。我们的分析表明,Elliott-Yafet和Dyakonov-Perel机制的重要性,后者机制在多层通道中的作用越来越大。在大区域不均匀的CVD石墨烯上具有多层斑块及其在室温下的边界和折叠的大区域不均匀CVD石墨烯上的通用和各向同性自旋传输的结果证明其出色的自旋互连功能,对开发可扩展的自旋电路有益。
The utilization of large-area graphene grown by chemical vapour deposition (CVD) is crucial for the development of scalable spin interconnects in all-spin-based memory and logic circuits. However, the fundamental influence of the presence of multilayer graphene patches and their boundaries on spin dynamics has not been addressed yet, which is necessary for basic understanding and application of robust spin interconnects. Here, we report universal spin transport and dynamic properties in specially devised single layer, bi-layer, and tri-layer graphene channels and their layer boundaries and folds that are usually present in CVD graphene samples. We observe uniform spin lifetime with isotropic spin relaxation for spins with different orientations in graphene layers and their boundaries at room temperature. In all the inhomogeneous graphene channels, the spin lifetime anisotropy ratios for spins polarized out-of-plane and in-plane are measured to be close to unity. Our analysis shows the importance of both Elliott-Yafet and Dyakonov-Perel mechanisms, with an increasing role of the latter mechanism in multilayer channels. These results of universal and isotropic spin transport on large-area inhomogeneous CVD graphene with multilayer patches and their boundaries and folds at room temperature prove its outstanding spin interconnect functionality, beneficial for the development of scalable spintronic circuits.