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Dual-mode frequency multiplier in graphene-base hot electron transistor

机译:石墨烯基热电子晶体管中的双模倍频器

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Since quantum computers have been gradually introduced in countries around the world, the development of the many related quantum components that can operate independently of temperature has become more important for enabling mature products with low power dissipation and high efficiency. As an alternative to studying cryo-CMOSs (complementary metal-oxide-semiconductors) to achieve this goal, quantum tunneling devices based on 2D materials can be examined instead. In this work, a vertical graphene-based quantum tunneling transistor has been used as a frequency modulator. The transistor can operate via different quantum tunneling mechanisms and generates, by applying the appropriate bias, voltage-resistance curves characteristic of variable nonlinear resistance for both base and emitter voltages. We experimentally demonstrate frequency modulation from input signals over the range of 100 kHz to 10 MHz, enabling a tunable frequency doubler or tripler in just a single transistor. This frequency multiplication with a tunneling mechanism makes the gra-phene-based tunneling device a promising option for frequency electronics in the emerging field of quantum technologies.
机译:逐渐从量子计算机介绍了世界各国,许多相关量子的发展组件可以独立运作温度已变得更为重要使成熟的产品与低功耗损耗和效率高。选择学习cryo-CMOSs(互补metal-oxide-semiconductors)来实现这一目标,基于二维材料的量子隧穿器件可以检查。石墨烯量子隧穿晶体管被用作频率调制器。通过不同的量子晶体管可以操作隧穿机制和生成,通过应用适当的偏见,耐电压曲线变量非线性电阻的特征基地和发射极电压。实验证明调频从输入信号100 kHz的范围10 MHz,使可调频率倍压器或三倍频器在一个晶体管。倍频与隧道使gra-phene-based隧道机制设备的一个有前途的选择频率电子在量子的新兴领域技术。

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