论文标题

理解无定形和多晶氧化物氧化物中负差分电阻的模式

Understanding modes of negative differential resistance in amorphous and polycrystalline vanadium oxides

论文作者

Nandi, Sanjoy Kumar, Das, Sujan Kumar, Estherby, Caleb, Gentle, Angus, Elliman, Robert G.

论文摘要

基于无定形VOX的金属氧化物 - 金属设备显示出根据电施用的最大电流而显示的两个不同的负差分电阻(NDR)特性之一。对于低依从性电流,它们具有光滑的S型特性,并且具有温度依赖性的设备电阻,其特征在于激活能为0.25 eV,与多晶Vo2的传导一致,而对于高稳定电流,它们具有突然的快照式靠背,它们具有0.025 ev的激活能量,具有连续性的contigent contigent contigent contigent contigent contigent and contigation contement and contigation。在这两种情况下,开关电压的温度依赖性都意味着电导率的变化是由于VO2中的绝缘体 - 金属过渡造成的。从该分析得出的结论是,在低电流下进行电试产生了主要由多晶Vo2组成的导电丝,而在高电流下进行电动型产生了由Vo2和氧气缺乏的导电光环组成的复合结构。然后,通过参考丝状传导的总元素模型来解释电动型对NDR模式的影响,该模型包括晕halo产生的平行电阻的效果。这些结果为基于氧化钒的设备的NDR响应以及设计具有特定特征的设备的基础提供了新的见解。

Metal-oxide-metal devices based on amorphous VOx are shown to exhibit one of two distinct negative differential resistance (NDR) characteristics depending on the maximum current employed for electroforming. For low compliance currents they exhibit a smooth S-type characteristic and have a temperature-dependent device resistance characterised by an activation energy of 0.25 eV, consistent with conduction in polycrystalline VO2, while for high-compliance currents they exhibit an abrupt snap-back characteristic and a resistance characterised by an activation energy of 0.025 eV, consistent with conduction in oxygen deficient VOx. In both cases, the temperature dependence of the switching voltage implies that the conductivity change is due to the insulator-metal transition in VO2. From this analysis it is concluded that electroforming at low currents creates a conductive filament comprised largely of polycrystalline VO2, while electroforming at high currents creates a composite structure comprised of VO2 and a conductive halo of oxygen deficient VOx. The effect of electroforming on the NDR mode is then explained with reference to a lumped element model of filamentary conduction that includes the effect of a parallel resistance created by the halo. These results provide new insight into the NDR response of vanadium-oxide-based devices and a basis for designing devices with specific characteristics.

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