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Strain-induced metal-semiconductor transition observed in atomic carbon chains

机译:在原子碳链中观察到应变诱导的金属-半导体跃迁

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Carbyne, the sp(1)-hybridized phase of carbon, is still a missing link in the family of carbon allotropes. While the bulk phases of carbyne remain elusive, the elementary constituents, that is, linear chains of carbon atoms, have already been observed using the electron microscope. Isolated atomic chains are highly interesting one-dimensional conductors that have stimulated considerable theoretical work. Experimental information, however, is still very limited. Here we show electrical measurements and first-principles transport calculations on monoatomic carbon chains. When the 1D system is under strain, the chains are semi-conducting corresponding to the polyyne structure with alternating bond lengths. Conversely, when the chain is unstrained, the ohmic behaviour of metallic cumulene with uniform bond lengths is observed. This confirms the recent prediction of a metal-insulator transition that is induced by strain. The key role of the contacting leads explains the rectifying behaviour measured in monoatomic carbon chains in a nonsymmetric contact configuration.
机译:卡宾,碳的sp(1)杂化相,仍然是碳同素异形体家族中缺失的环节。虽然卡宾的主体相仍然难以捉摸,但已经使用电子显微镜观察到了基本成分,即碳原子的线性链。孤立的原子链是非常有趣的一维导体,已经激发了大量的理论工作。但是,实验信息仍然非常有限。在这里,我们显示了单原子碳链的电学测量和第一性原理传输计算。当一维系统处于应变状态时,链是半导体的,对应于具有交替键长的多炔结构。相反地​​,当链不受拉时,观察到具有均匀键长的金属异丙苯的欧姆行为。这证实了最近对由应变引起的金属-绝缘体转变的预测。接触引线的关键作用解释了在非对称接触构型下单原子碳链中测得的整流行为。

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