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作 者:赵文静[1] 丁梦光 杨晓丽 胡海云[1] Zhao Wen-Jing;Ding Meng-Guang;Yang Xiao-Li;Hu Hai-Yun(School of Physics,Beijing Institute of Technology,Beijing 100081,China)
出 处:《物理学报》2020年第10期26-34,共9页Acta Physica Sinica
摘 要:栅氧化层的经时击穿作为影响互补型金属-氧化物-半导体集成电路可靠性的一个重要因素,一直是国内外学者研究的重点.为了对其进一步研究,首先从栅氧化层在电应力下经时击穿的微观机理出发,基于栅氧化层中电子陷阱密度累积达到临界值时发生击穿的原理和电子陷阱生成过程的随机性,提出了栅氧化层经时击穿的非平衡统计理论分析方法,然后分别给出了恒定电流应力和恒定电压应力下电子陷阱生成速率方程,导出了电子陷阱密度的概率密度分布函数.最后以具体器件为例进行分析,得到了栅氧化层的最概然寿命随电流应力、电压应力及其厚度的变化规律,并类比固体断裂现象中"疲劳极限"的概念定义"击穿极限"概念.计算出了累积失效率随电流应力、电压应力和时间的变化规律,引入特征值来描述累积失效率达到0.63所用的时间.结果表明:电子陷阱密度的概率密度分布函数满足对数正态分布,且理论结果与实验结果相符.As one of the important factors affecting the reliability of Complementary metal oxide semiconductor integrated circuits,the time-dependent dielectric breakdown of gate oxide has always been the focus of domestic and foreign scientists.The previous researches have shown that when the electrons pass through the silicon dioxide lattice and collide with it,part of their kinetic energy will be dissipated,then among of which can create some sort of defects that behave as electron traps.However,when the electron traps density reaches a critical value in the gate oxide,the destructive thermal effects open a low-resistance ohmic path between the electrodes,thus,triggering the breakdown conducting mechanism.In this paper,in order to employing a statistical theoretical analysis method,the behavior related with time-dependent dielectric breakdown of gate oxide was investigated in detail.The following useful results are obtained,(ⅰ) According to the microscopic mechanism of the time-dependent dielectric breakdown of gate oxide under electrical stresses associated with the randomness and irreversibility of the electron traps generation in gate oxide,a theoretical analysis method has been proposed,which is based on the equation of the electron traps generation rate combined with the Langevin equation in random theory and the Fokker-Planck equation in the non-equilibrium statistical theory.(ⅱ) In light of the dynamic equilibrium model,the generation rate equations of electron traps under constant current stress and constant voltage stress as well as the probability density distribution functions of electron traps density were determined.By integrating these distribution function,the cumulative failure rate was further obtained.(ⅲ) Taking the specific metal oxide semiconductor capacitors as examples,the relationship between the most probable lifetime of the gate oxide and the constant current stress,constant voltage stress,as well as its thickness have been revealed.And the concept of "breakdown limit" was defined by analo
分 类 号:TN432[电子电信—微电子学与固体电子学]
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