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首页> 外文期刊>Journal of nanomaterials >WPG-Controlled Quantum BDD Circuits with BDD Architecture on GaAs-Based Hexagonal Nanowire Network Structure
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WPG-Controlled Quantum BDD Circuits with BDD Architecture on GaAs-Based Hexagonal Nanowire Network Structure

机译:基于GaAs的六角形纳米线网络结构上具有BDD结构的WPG控制的量子BDD电路

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One-dimensional nanowire quantum devices and basic quantum logic AND and OR unit on hexagonal nanowire units controlled by wrap gate (WPG) were designed and fabricated on GaAs-based one-dimensional electron gas (1-DEG) regular nanowire network with hexagonal topology. These basic quantum logic units worked correctly at 35 K, and clear quantum conductance was achieved on the node device, logic AND circuit unit, and logic OR circuit unit. Binary-decision-diagram- (BDD-) based arithmetic logic unit (ALU) is realized on GaAs-based regular nanowire network with hexagonal topology by the same fabrication method as that of the quantum devices and basic circuits. This BDD-based ALU circuit worked correctly at room temperature. Since these quantum devices and circuits are basic units of the BDD ALU combinational circuit, the possibility of integrating these quantum devices and basic quantum circuits into the BDD-based quantum circuit with more complicated structures was discussed. We are prospecting the realization of quantum BDD combinational circuitries with very small of energy consumption and very high density of integration.
机译:在具有六边形拓扑结构的基于GaAs的一维电子气(1-DEG)规则纳米线网络上,设计和制造了由包裹门(WPG)控制的六角形纳米线单元上的一维纳米线量子器件和基本量子逻辑“与”或“或”单元。这些基本的量子逻辑单元在35 K下可以正常工作,并且在节点设备,逻辑与电路单元和逻辑或电路单元上实现了清晰的量子电导。在具有六边形拓扑结构的基于GaAs的规则纳米线网络上,通过与量子器件和基本电路相同的制造方法,实现了基于二元决策图(BDD)的算术逻辑单元(ALU)。这种基于BDD的ALU电路在室温下可以正常工作。由于这些量子器件和电路是BDD ALU组合电路的基本单元,因此讨论了将这些量子器件和基本量子电路集成到具有更复杂结构的基于BDD的量子电路中的可能性。我们期待以非常小的能量消耗和非常高的集成密度实现量子BDD组合电路。

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