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Graphene-based switching elements using a diamond-shaped nano-patch and interconnecting nano-ribbons

机译:基于石墨烯的开关元件,使用菱形纳米贴片并互连纳米带

摘要

The use of diamond-shaped graphene nano-patches as novel non-volatile switching elements exhibiting transitions between high and low conductance states based on changes of magnetic ordering of these states. Non-magnetic reconstructed graphene nano-ribbons are used as non-invasive leads to implement the switching elements as carbon-nanoflake based memories and transistors. Switching of the elements may be implemented by electric-field-induced altering of the magnetic state. Graphene nano-patch shapes of certain geometries provide passive electric-field sources such as to establish initial bits of information saved in graphene-based memories.
机译:金刚石形状的石墨烯纳米贴片作为新型非易失性开关元件的使用基于这些状态的磁序变化而在高和低电导状态之间表现出跃迁。非磁性重建的石墨烯纳米带被用作非侵入性引线,以将开关元件实现为基于碳纳米薄片的存储器和晶体管。元件的切换可以通过电场引起的磁态改变来实现。某些几何形状的石墨烯纳米贴片形状提供了无源电场源,例如建立了保存在基于石墨烯的存储器中的信息的初始位。

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