论文标题
可编程逻辑和内存计算的互补侧旋转轨道构建块
Complementary lateral-spin-orbit building blocks for programmable logic and in-memory computing
论文作者
论文摘要
基于自旋轨道扭矩的非挥发性型材料和设备的电流驱动的切换提供了快速的数据处理速度,低功耗和无限制的耐力,用于将来的信息处理应用程序。类似于常规的CMOS技术,重要的是开发一对具有分化磁化开关感官的互补自旋轨道设备,作为实现复杂逻辑功能的基本构件。已经提出了使用外部磁场或复杂的堆栈/电路设计的各种尝试,但是,仍然需要更普通,更可行的方法。在这里,我们表明一对具有相反激光轨道配置的两条本地激光器退火垂直的PT/CO/PT设备,从而可以用作这种互补的旋转型构件。通过电气编程每个样品的初始磁化状态(向下/向上),获得了四个布尔逻辑门,或者,或者,或者,NON和NON,以及一个含有XOR栅极的自旋轨道半加油机。此外,还通过磁化状态作为逻辑输入来证明各种无初始化的,可工作的电流强度可编程的状态逻辑操作,包括材料含义(IMP)门。我们的互补LSOT构建块为未来有效的旋转逻辑和内存计算体系结构提供了一种适用的方式。
Current-driven switching of nonvolatile spintronic materials and devices based on spin-orbit torques offer fast data processing speed, low power consumption, and unlimited endurance for future information processing applications. Analogous to conventional CMOS technology, it is important to develop a pair of complementary spin-orbit devices with differentiated magnetization switching senses as elementary building blocks for realizing sophisticated logic functionalities. Various attempts using external magnetic field or complicated stack/circuit designs have been proposed, however, plainer and more feasible approaches are still strongly desired. Here we show that a pair of two locally laser annealed perpendicular Pt/Co/Pt devices with opposite laser track configurations and thereby inverse field-free lateral spin-orbit torques (LSOTs) induced switching senses can be adopted as such complementary spin-orbit building blocks. By electrically programming the initial magnetization states (spin down/up) of each sample, four Boolean logic gates of AND, OR, NAND and NOR, as well as a spin-orbit half adder containing an XOR gate, were obtained. Moreover, various initialization-free, working current intensity-programmable stateful logic operations, including the material implication (IMP) gate, were also demonstrated by regarding the magnetization state as a logic input. Our complementary LSOT building blocks provide an applicable way towards future efficient spin logics and in-memory computing architectures.