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电荷配置存储器件:能源效率与开关速度

Charge Configuration Memory Devices: Energy Efficiency and Switching Speed.

作者信息

Mraz Anze, Venturini Rok, Svetin Damjan, Sever Vitomir, Mihailovic Ian Aleksander, Vaskivskyi Igor, Ambrozic Bojan, Dražić Goran, D'Antuono Maria, Stornaiuolo Daniela, Tafuri Francesco, Kazazis Dimitrios, Ravnik Jan, Ekinci Yasin, Mihailovic Dragan

机构信息

Complex Matter Department F7, Jozef Stefan Institute, Jamova cesta 39, 1000 Ljubljana, Slovenia.

Faculty of Electrical Engineering, University of Ljubljana, Tržaška cesta 25, 1000 Ljubljana, Slovenia.

出版信息

Nano Lett. 2022 Jun 22;22(12):4814-4821. doi: 10.1021/acs.nanolett.2c01116. Epub 2022 Jun 10.

Abstract

Current trends in data processing have given impetus for an intense search of new concepts of memory devices with emphasis on efficiency, speed, and scalability. A promising new approach to memory storage is based on resistance switching between charge-ordered domain states in the layered dichalcogenide 1T-TaS. Here we investigate the energy efficiency scaling of such charge configuration memory (CCM) devices as a function of device size and data write time τ as well as other parameters that have bearing on efficient device operation. We find that switching energy efficiency scales approximately linearly with both quantities over multiple decades, departing from linearity only when τ approaches the ∼0.5 ps intrinsic switching limit. Compared to current state of the art memory devices, CCM devices are found to be much faster and significantly more energy efficient, demonstrated here with two-terminal switching using 2.2 fJ, 16 ps electrical pulses.

摘要

当前数据处理的趋势推动了对新型存储设备概念的深入探索,重点在于效率、速度和可扩展性。一种有前景的新存储方法基于层状二硫属化物1T-TaS中电荷有序畴态之间的电阻切换。在此,我们研究这种电荷配置存储器(CCM)设备的能量效率缩放情况,它是设备尺寸、数据写入时间τ以及其他与设备高效运行相关参数的函数。我们发现,在多个数量级上,切换能量效率与这两个量大致呈线性缩放,仅当τ接近约0.5皮秒的固有切换极限时才偏离线性。与当前最先进的存储设备相比,发现CCM设备速度更快且能量效率显著更高,这里通过使用2.2飞焦、16皮秒的电脉冲进行两端切换得以证明。

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