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Graphene-based micro-emitters and vacuum transistors

机译:基于石墨烯的微发射极和真空晶体管

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The scaling down of thermionic emitters to the microscale is achieved by using microfabrication technologies and graphene working as the emitter. A graphene micro-emitters can be turned on by a voltage of several volts and its emission current exhibits a tunability of up to six orders by a modest gate. Importantly, emission performances of graphene micro-emitters are controllable and repeatable through engineering graphene dimensions by microfabrication technologies. Based on a graphene micro-emitter, a vacuum transistor with high switching performances is experimentally demonstrated. By integrating two graphene-based vacuum transistors, we achieve an ambipolar transistor with perfectly symmetric transfer characteristics centered at 0 V and an ON/OFF current ratio of 103. The ambipolar vacuum transistor shows the potential in AC applications such as frequency multipliers and rectifiers in extreme environments.
机译:通过使用微细加工技术和石墨烯作为发射极,可以将热电子发射体的尺寸缩小到微米级。可以通过几伏特的电压来开启石墨烯微发射极,而适度的栅极可将其发射电流呈现出高达六个数量级的可调性。重要的是,通过微细加工技术,通过工程石墨烯的尺寸,石墨烯微发射体的发射性能是可控和可重复的。基于石墨烯微发射极,实验证明了具有高开关性能的真空晶体管。通过集成两个基于石墨烯的真空晶体管,我们获得了具有以0 V为中心的完美对称传输特性和103的ON / OFF电流比的双极性晶体管。该双极性真空晶体管显示了在AC应用中的潜力,例如倍频器和整流器。极端环境。

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