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用于量子点细胞自动机光谱读出的不对称混合价分子。

Asymmetric, mixed-valence molecules for spectroscopic readout of quantum-dot cellular automata.

作者信息

Liza Nishattasnim, Murphey Dylan, Cong Peizhong, Beggs David W, Lu Yuihui, Blair Enrique P

机构信息

Electrical and Computer Engineering Department, Baylor University, Waco, TX, United States of America.

出版信息

Nanotechnology. 2021 Dec 21;33(11). doi: 10.1088/1361-6528/ac40c0.

Abstract

Mixed-valence compounds may provide molecular devices for an energy-efficient, low-power, general-purpose computing paradigm known as quantum-dot cellular automata (QCA). Multiple redox centers on mixed-valence molecules provide a system of coupled quantum dots. The configuration of mobile charge on a double-quantum-dot (DQD) molecule encodes a bit of classical information robust at room temperature. When arranged in non-homogeneous patterns (circuits) on a substrate, local Coulomb coupling between molecules enables information processing. While single-electron transistors and single-electron boxes could provide low-temperature solutions for reading the state of a ∼1 nm scale molecule, we propose a room-temperature read-out scheme. Here, DQD molecules are designed with slightly dissimilar quantum dots.calculations show that the binary device states of an asymmetric molecule have distinct Raman spectra. Additionally, the dots are similar enough that mobile charge is not trapped on either dot, allowing device switching driven by the charge configuration of a neighbor molecule. A technique such as tip-enhanced Raman spectroscopy could be used to detect the state of a circuit comprised of several QCA molecules.

摘要

混合价化合物可能为一种被称为量子点细胞自动机(QCA)的节能、低功耗通用计算范式提供分子器件。混合价分子上的多个氧化还原中心提供了一个耦合量子点系统。双量子点(DQD)分子上移动电荷的配置编码了在室温下稳定的一点经典信息。当在基板上以非均匀模式(电路)排列时,分子之间的局部库仑耦合实现信息处理。虽然单电子晶体管和单电子盒可以为读取约1纳米尺度分子的状态提供低温解决方案,但我们提出了一种室温读出方案。在这里,DQD分子被设计为具有略有不同的量子点。计算表明,不对称分子的二元器件状态具有不同的拉曼光谱。此外,这些量子点足够相似,以至于移动电荷不会被困在任何一个量子点上,从而允许由相邻分子的电荷配置驱动器件切换。诸如针尖增强拉曼光谱之类的技术可用于检测由几个QCA分子组成的电路的状态。

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