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Time-dependent quantum transport theory and its applications to graphene nanoribbons ,1 1
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Document Date: 2013-12-11 04:09:41


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City

Weinheim / Kowloon / /

Company

WILEY-VCH Verlag GmbH & Co. KGaA / tÞ Sa / Hefei National Laboratory / /

Currency

pence / /

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Event

Reorganization / /

Facility

The University of Hong Kong / The Hong Kong University of Science / University of Science / /

IndustryTerm

large systems / nonzero self-energy functions / nonzero self-energy elements / narrow device / energy window / combination algorithm / self-energy / quantum transport theory large systems / onsite energy changes / energy domain / energy level / self-energy matrix / energy range / ne energy grids / self-energy matrices / static solutions / zero-energy range / energy integrals / electronic devices / chemical potential / realistic systems / hybrid algorithm / self-energy curves / nonzero self-energy curves / self-energy curve / steady-state self-energy / larger systems / energy / /

NaturalFeature

Clear Water Bay / /

OperatingSystem

LDOS / Fermi / /

Organization

Hong Kong University of Science and Technology / University of Hong Kong / Hong Kong Department of Chemistry / University of Science and Technology of China / Hefei / Department of Chemistry / /

Person

Xiao Zheng / /

/

Position

time-dependent DFT author / Rt / /

Product

ð9bÞ S< / /

ProvinceOrState

ZGNR / /

TVStation

WBL / /

Technology

semiconductor / hybrid algorithm / Kutta algorithm / combination algorithm / Marquardt algorithm / Technology of China / /

URL

www.pss-b.com / /

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