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通过电寻址硅中的三掺杂剂分子并行实现多变量逻辑函数

Implementation of Multivariable Logic Functions in Parallel by Electrically Addressing a Molecule of Three Dopants in Silicon.

作者信息

Fresch Barbara, Bocquel Juanita, Hiluf Dawit, Rogge Sven, Levine Raphael D, Remacle Françoise

机构信息

Theoretical Physical Chemistry, University of Liege, B4000, Liege, Belgium.

Department of Chemical Science, University of Padova, Via Marzolo 1, 35131, Italy.

出版信息

Chemphyschem. 2017 Jul 5;18(13):1790-1797. doi: 10.1002/cphc.201700222. Epub 2017 May 29.

Abstract

To realize low-power, compact logic circuits, one can explore parallel operation on single nanoscale devices. An added incentive is to use multivalued (as distinct from Boolean) logic. Here, we theoretically demonstrate that the computation of all the possible outputs of a multivariate, multivalued logic function can be implemented in parallel by electrical addressing of a molecule made up of three interacting dopant atoms embedded in Si. The electronic states of the dopant molecule are addressed by pulsing a gate voltage. By simulating the time evolution of the non stationary electronic density built by the gate voltage, we show that one can implement a molecular decision tree that provides in parallel all the outputs for all the inputs of the multivariate, multivalued logic function. The outputs are encoded in the populations and in the bond orders of the dopant molecule, which can be measured using an STM tip. We show that the implementation of the molecular logic tree is equivalent to a spectral function decomposition. The function that is evaluated can be field-programmed by changing the time profile of the pulsed gate voltage.

摘要

为了实现低功耗、紧凑型逻辑电路,可以探索在单个纳米级器件上进行并行操作。另一个激励因素是使用多值(不同于布尔值)逻辑。在此,我们从理论上证明,通过对嵌入硅中的由三个相互作用的掺杂原子组成的分子进行电寻址,可以并行实现多变量、多值逻辑函数的所有可能输出的计算。通过对栅极电压进行脉冲操作来寻址掺杂分子的电子态。通过模拟由栅极电压建立的非稳态电子密度的时间演化,我们表明可以实现一个分子决策树,该决策树为多变量、多值逻辑函数的所有输入并行提供所有输出。输出编码在掺杂分子的布居数和键级中,可以使用扫描隧道显微镜(STM)针尖进行测量。我们表明分子逻辑树的实现等同于谱函数分解。通过改变脉冲栅极电压的时间分布,可以对所评估的函数进行现场编程。

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