【2h】

Integrated logic circuits using single-atom transistors

机译:使用单原子晶体管的集成逻辑电路

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摘要

Scaling down the size of computing circuits is about to reach the limitations imposed by the discrete atomic structure of matter. Reducing the power requirements and thereby dissipation of integrated circuits is also essential. New paradigms are needed to sustain the rate of progress that society has become used to. Single-atom transistors, SATs, cascaded in a circuit are proposed as a promising route that is compatible with existing technology. We demonstrate the use of quantum degrees of freedom to perform logic operations in a complementary-metal–oxide–semiconductor device. Each SAT performs multilevel logic by electrically addressing the electronic states of a dopant atom. A single electron transistor decodes the physical multivalued output into the conventional binary output. A robust scalable circuit of two concatenated full adders is reported, where by utilizing charge and quantum degrees of freedom, the functionality of the transistor is pushed far beyond that of a simple switch.
机译:缩小计算电路的规模即将达到物质离散原子结构所施加的限制。降低功率需求并由此降低集成电路的耗散也是必不可少的。需要新的范例来维持社会已经习惯的进步速度。提出了级联在电路中的单原子晶体管SAT是与现有技术兼容的有前途的途径。我们演示了使用量子自由度在互补金属氧化物半导体器件中执行逻辑运算。每个SAT通过电寻址掺杂原子的电子状态来执行多级逻辑。单电子晶体管将物理多值输出解码为常规的二进制输出。报告了一种由两个串联的全加法器组成的健壮的可扩展电路,其中通过利用电荷和量子自由度,晶体管的功能远远超出了简单开关的功能。

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