论文标题

时钟量子点蜂窝自动机电路可忍受不需要的外部电场

Clocked Quantum-dot Cellular Automata Circuits Tolerate Unwanted External Electric Fields

论文作者

Cong, Peizhong, Blair, Enrique P.

论文摘要

量子点细胞自动机(QCA)可以在后CMOS时代提供低功率的通用计算。 QCA的分子实现具有纳米尺度设备,并可能支持室温下的THZ开关速度。在这里,我们探讨了分子QCA电路耐受不需要的电场的能力,这可能来自多种来源。最近可能提出的一个强大不需要电场的电场来源是将经典钻头写入分子QCA输入电路的电极。以前的模型表明,输入电路对应用的场很敏感,尽管施加强的磁场,但耦合的QCA线可以成功地将输入位传输到下游电路。但是,尚未证明其他QCA电路耐受施加场的能力。在这里,我们通过在应用领域的存在下计算其基态响应来研究各种QCA电路的鲁棒性。为此,由几个QCA分子构建的电路,每个分子都被描述为两个状态系统。形成和对角线的哈密顿电路。考虑细胞之间的所有成对相互作用以及所有相关性。对基态的检查表明,这些QCA电路确实可以忍受强大的不需要电场。我们还表明,可以通过选择组成分子的方向来获得对主要不需要场成分的电路免疫。这表明用于分子QCA的比特写入的相对较大的电极不必破坏附近QCA电路的运行。电路也可能容忍其他来源的大量电场。

Quantum-dot cellular automata (QCA) may provide low-power, general-purpose computing in the post-CMOS era. A molecular implementation of QCA features nanometer-scale devices and may support THz switching speeds at room-temperature. Here, we explore the ability of molecular QCA circuits to tolerate unwanted applied electric fields, which may come from a variety of sources. One likely source of strong unwanted electric fields may be electrodes recently proposed for the write-in of classical bits to molecular QCA input circuits. Previous models have shown that the input circuits are sensitive to the applied field, and a coupled QCA wire can successfully transfer the input bit to downstream circuits despite strong applied fields. However, the ability of other QCA circuits to tolerate an applied field has not yet been demonstrated. Here we study the robustness of various QCA circuits by calculating their ground state responses in the presence an applied field. To do this, a circuit is built from several QCA molecules, each described as a two-state system. A circuit Hamiltonian is formed and diagonalized. All pairwise interactions between cells are considered, along with all correlations. An examination of the ground state shows that these QCA circuits may indeed tolerate strong unwanted electric fields. We also show that circuit immunity to the dominant unwanted field component may be obtained by choosing the orientation of constituent molecules. This suggests that relatively large electrodes used for bit write-in to molecular QCA need not disrupt the operation of nearby QCA circuits. The circuits may tolerate significant electric fields from other sources, as well.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源