نتایج جستجو برای: energy gaps

تعداد نتایج: 715617  

Journal: :Physical review letters 2006
Young-Woo Son Marvin L Cohen Steven G Louie

Based on a first-principles approach, we present scaling rules for the band gaps of graphene nanoribbons (GNRs) as a function of their widths. The GNRs considered have either armchair or zigzag shaped edges on both sides with hydrogen passivation. Both varieties of ribbons are shown to have band gaps. This differs from the results of simple tight-binding calculations or solutions of the Dirac's...

Journal: :Physical Review B 2012

This article discusses details study on crystallization , optical properties of Li-Al-Si-La glass containing nanocrystalline LaF3.and their optical energy gaps. The Urbach energy of glass samples was evaluated. By using (2% mole) Tb the green–blue range emission occurred, while by accumulation 1% mole Gd beside Tb, the indigo emission intensity (418 to 441 nm) increased.

Journal: :Physics Letters A 2009

Journal: :Building Research & Information 2017

Journal: :Physical Review Letters 2009

Journal: :Journal of Mathematical Analysis and Applications 2016

Journal: :Physical review letters 2009
C Stampfer J Güttinger S Hellmüller F Molitor K Ensslin T Ihn

Transport measurements on an etched graphene nanoribbon are presented. It is shown that two distinct voltage scales can be experimentally extracted that characterize the parameter region of suppressed conductance at low charge density in the ribbon. One of them is related to the charging energy of localized states, the other to the strength of the disorder potential. The lever arms of gates var...

2012
J. K. Ren X. B. Zhu H. F. Yu Ye Tian H. F. Yang C. Z. Gu N. L. Wang Y. F. Ren S. P. Zhao

The relationship between the cuprate pseudogap (Δ(p)) and superconducting gap (Δ(s)) remains an unsolved mystery. Here, we present a temperature- and doping-dependent tunneling study of submicron Bi(2)Sr(2)CaCu(2)O(8+δ) intrinsic Josephson junctions, which provides a clear evidence that Δ(s) closes at a temperature T(c) (0) well above the superconducting transition temperature T(c) but far belo...

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