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Low Power Nanoscale Switching of VO2using Carbon Nanotube Heaters

机译:使用碳纳米管加热器的VO 2 低功率纳米级切换

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Vanadium dioxide (VO2) is attractive for a variety of applications in optics and electronics, due to its abrupt insulator-metal transition (IMT) with$> 10^{3}imes$change in resistance near room temperature. Use of VO2in devices will require low power switching, with knowledge of the transition mechanism and behaviour down to nanoscale dimensions. To address this challenge, we use metallic carbon nanotubes (CNTs) with diameter ~1 nm [1] to probe nanoscale IMT in VO2for the first time. We find that a single CNT locally switches the VO2at less than half the voltage and power otherwise required. Furthermore, to understand the nanoscale IMT we use scanning probe microscopy (SPM) techniques to study devices during operation.
机译:二氧化钒(VO 2 )是用于各种光学和电子,应用具有吸引力由于其突变绝缘体 - 金属过渡(IMT)与 $> 10 ^ {3} 倍$ 在接近室温的电阻变化。 VO的应用 2 在设备需要低功率开关,与过渡机制的认识和行为降低到纳米尺度。为了应对这一挑战,我们使用的金属性碳纳米管(CNT)的直径〜1nm的[1]〜探测在VO纳米IMT 2 首次。我们发现,一个单一的CNT本地切换VO 2 在不到一半的电压和功率另有要求。此外,要理解我们使用操作过程中扫描探针显微镜(SPM)技术来研究设备的纳米级IMT。

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