石墨烯
量子点
库仑阻塞
动态台球
物理
电子
凝聚态物理
纳米
石墨烯量子点
量子
量子力学
纳米技术
材料科学
晶体管
电压
光学
作者
Л. А. Пономаренко,F. Schedin,M. I. Katsnelson,Rui Yang,E.W. Hill,Kostya S. Novoselov,A. K. Geǐm
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2008-04-17
卷期号:320 (5874): 356-358
被引量:2164
标识
DOI:10.1126/science.1154663
摘要
The exceptional electronic properties of graphene, with its charge carriers mimicking relativistic quantum particles and its formidable potential in various applications, have ensured a rapid growth of interest in this new material. We report on electron transport in quantum dot devices carved entirely from graphene. At large sizes (>100 nanometers), they behave as conventional single-electron transistors, exhibiting periodic Coulomb blockade peaks. For quantum dots smaller than 100 nanometers, the peaks become strongly nonperiodic, indicating a major contribution of quantum confinement. Random peak spacing and its statistics are well described by the theory of chaotic neutrino billiards. Short constrictions of only a few nanometers in width remain conductive and reveal a confinement gap of up to 0.5 electron volt, demonstrating the possibility of molecular-scale electronics based on graphene.
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