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A comprehensive study of bipolar operation in resistive switching memory devices

机译:电阻开关存储器件中双极性操作的综合研究

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The authors present a new numerical analysis method to investigate the conduction filament dynamics of a resistive switching nonvolatile metal-insulator-metal structured memory device. This comprehensive method, utilizing the Gibbs free energy criteria as a leading indicator and allowing simulation of all resistive memory operational phases (forming, set and reset), is presented for the first time. The formation and rupture of an oxygen vacancies based conduction filament are simulated to demonstrate a cycle of operation in a hafnium oxide based resistive forming layer. Starting from a random initial distribution of defect states, on to a formed conduction filament and ending in a ruptured state. Detailed plots of the physical parameters within the resistive layer are provided to gain deeper understanding of the conduction filament kinetics and introduce the concept of "hot spots", referring to random localized initial agglomeration of oxygen vacancies in which temperature surges is favored and contribute to initiate the conductive filament formation. By basing the method on well known thermodynamic properties and the Metropolis algorithm, simulation reliability and efficiency are obtained. The presented results confirm previously published data demonstrating the switching characteristics of hafnium based resistive random access memory.
机译:作者提出了一种新的数值分析方法,以研究电阻开关非易失性金属-绝缘体-金属结构的存储器件的导电丝动力学。首次展示了这种综合方法,该方法利用吉布斯自由能准则作为主要指标,并允许模拟所有电阻式存储器操作阶段(形成,设置和重置)。模拟了基于氧空位的导电丝的形成和破裂,以证明在基于氧化ha的电阻形成层中的操作循环。从缺陷状态的随机初始分布开始,到形成的导电丝,并以断裂状态结束。提供了电阻层内物理参数的详细图解,以加深对导电丝动力学的了解,并引入“热点”的概念,指的是氧空位的随机局部初始团聚,其中有利于温度波动并有助于引发导电丝的形成。通过将该方法基于众所周知的热力学性质和Metropolis算法,可以获得仿真的可靠性和效率。呈现的结果证实了先前发表的数据,这些数据证明了基于based的电阻式随机存取存储器的开关特性。

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