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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electrically Addressing a Molecule-Like Donor Pair in Silicon: An Atomic Scale Cyclable Full Adder Logic
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Electrically Addressing a Molecule-Like Donor Pair in Silicon: An Atomic Scale Cyclable Full Adder Logic

机译:电寻址硅中的分子类似供体对:原子级可循环循环全加法器逻辑

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摘要

Electrical spectroscopy of a heteroatomic molecule-like shallow-donor pair in silicon can switch the molecule between two ionic states of opposite polarities. We study this charge reorganization theoretically by solving the time-dependent Schroedinger equation on a grid using an effective mass model. The ability to control the charge reorganization by applying external electrical fields is then used to design a cyclable full-adder that operates as a nonlinear finite state machine. The logic operations, equivalent to 32 switches, are implemented by realistic pulse voltages that induce diabatic and adiabatic charge transfer between the wells of the two donors. A RF-SET is used for the read out by charge detection.
机译:硅中的杂原子分子状浅供体对的电光谱可以在相反极性的两个离子态之间切换分子。我们通过使用有效质量模型在网格上求解时间相关的Schroedinger方程,从理论上研究了这种电荷重组。然后,通过施加外部电场来控制电荷重组的能力被用于设计可循环的全加法器,该加法器可作为非线性有限状态机工作。逻辑操作等效于32个开关,是通过实际的脉冲电压实现的,该电压在两个施主的阱之间引发了绝热和绝热电荷转移。 RF-SET用于通过电荷检测读出。

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