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首页> 外文期刊>Journal of Computational Electronics >Using the full quantum basis set to simulate quantum-dot cellular automata devices
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Using the full quantum basis set to simulate quantum-dot cellular automata devices

机译:使用全量子基础设置以模拟量子点蜂窝自动机器设备

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摘要

Quantum-dot cellular automata (QCA) are a leading example of field-coupled nanocomputing (FCN) devices. All FCN devices rely on local field interactions among nanoscale building blocks that are arranged in patterns to perform useful calculations. Many methods have been introduced to simulate these devices, but not all of those methods are guaranteed to give correct results. The only method that is certain to give the correct results is constructing and diagonalizing the Hamiltonian operator using a full-basis set for the entire device. Not only does this give all stable states of the device (necessarily including the ground state), it also allows the detection of non-polarized states of QCA and other FCN cells. Unfortunately, simulating moderately complex devices using the full-basis set has been prohibitively expensive, both in storage space and in calculation time. The authors present a new method for calculating the eigenstates of a full-basis set Hamiltonian and use this method to demonstrate that at least one previously published QCA device does not, in fact, operate as it was simulated and described in the previous work. Identifying an error in a previously published device using a heretofore computationally infeasible simulation shows the value of using the exact full-basis calculation in the simulation of QCA devices.
机译:量子点蜂窝自动机(QCA)是现场耦合纳米电脑(FCN)器件的主要示例。所有FCN设备依赖于纳米级构件块之间的本地场交互,该块以模式布置以执行有用的计算。已经引入了许多方法来模拟这些设备,但并非所有这些方法都保证给出正确的结果。唯一肯定提供正确结果的方法正在使用整个设备的全部基础集构造和对角度化哈密顿运算符。这不仅提供了设备的所有稳定状态(必然包括地态),还允许检测QCA和其他FCN细胞的非极化状态。遗憾的是,使用全基集模拟中等复杂的设备在存储空间和计算时间内都是昂贵的。作者呈现了一种新的方法,用于计算全基础集Hamiltonian的特征,并使用该方法证明至少一个先前已发布的QCA设备实际上没有操作,因为它在上一个工作中的模拟和描述。使用迄今为止计算不可行的模拟识别先前发布的设备中的错误显示使用QCA设备模拟中的确切全面计算的值。

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