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Nanomaterials / Emerging technologies / Quantum phases / Graphene / Carbon nanotube / Quantum Hall effect / Conductance / Crystallographic defect / Mitsutaka Fujita / Physics / Condensed matter physics / Materials science


PHYSICAL REVIEW B 79, 115403 共2009兲 Quantum blockade and loop current induced by a single lattice defect in graphene nanoribbons Jie-Yun Yan,1,* Ping Zhang,1 Bo Sun,1 Hai-Zhou Lu,2 Zhigang Wang,1 Suqing Duan,1 and X
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Document Date: 2011-04-21 21:29:12


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City

Santos / Xian / Beijing / A. H / London / /

Company

P. O. Lehtinen A. S. / Cambridge University Press / Mesoscopic Systems / 3M / /

Country

Guinea / United Kingdom / China / /

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Event

Product Issues / /

Facility

Hall effect1 / 2 / The University of Hong Kong / /

IndustryTerm

metal / lattice defect site / stable adsorption site / nearest-neighbor hopping energy / energy position / self-energy / defect site / defect-lattice site / energy gap / zero energy gap / selective energy value / electronic energy-band structures / electronics / on-top site / lattice site / state-of-art fabrication technologies / chemical bonding / low-energy conductance step / energy / /

OperatingSystem

Fermi / /

Organization

Cambridge University / pentagon / Centre of Theoretical and Computational Physics / University of Hong Kong / /

Person

S. Iijima / K. Urita / Jie-Yun Yan / Ping Zhang / K. Suenaga / A. Hashimoto / A. Gloter / /

Product

graphene nanoribbons / graphene ribbon / graphene ribbons / graphene nanoribbon / /

SportsEvent

EPL 80 / /

Technology

semiconductor / state-of-art fabrication technologies / hybridization / /

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