期刊文献+

Resonance Transport of Graphene Nanoribbon T-Shaped Junctions 被引量:1

Resonance Transport of Graphene Nanoribbon T-Shaped Junctions
下载PDF
导出
摘要 We investigate the transport properties of T-shaped junctions composed of armchair graphene nanoribbons of different widths. Three types of junction geometries are considered. The junction conductance strongly depends on the atomic features of the junction geometry. When the shoulders of the junction have zigzag type edges, sharp conductance resonances usually appear in the low energy region around the Dirac point, and a conductance gap emerges. When the shoulders of the junction have armchair type edges, the conductance resonance behavior is weakened significantly, and the metal-metal-metal junction structures show semimetallic behaviors. The contact resistance also changes notably due to the various interface geometries of the junction. We investigate the transport properties of T-shaped junctions composed of armchair graphene nanoribbons of different widths. Three types of junction geometries are considered. The junction conductance strongly depends on the atomic features of the junction geometry. When the shoulders of the junction have zigzag type edges, sharp conductance resonances usually appear in the low energy region around the Dirac point, and a conductance gap emerges. When the shoulders of the junction have armchair type edges, the conductance resonance behavior is weakened significantly, and the metal-metal-metal junction structures show semimetallic behaviors. The contact resistance also changes notably due to the various interface geometries of the junction.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2010年第4期204-207,共4页 中国物理快报(英文版)
基金 Sponsored by the National Natural Science Foundation of China under Grant No 10804058, the Natural Science Foundation of Ningbo under Grant No 2009A610017, and the K. C. Wong Magna Fund in Ningbo University.
关键词 Condensed matter: electrical magnetic and optical Surfaces interfaces and thin films Nanoscale science and low-D systems Condensed matter: electrical, magnetic and optical Surfaces, interfaces and thin films Nanoscale science and low-D systems
  • 相关文献

参考文献22

  • 1Avouris P, Chen Z H and Perebeinos V 2007 Nature Nanotechnol. 2 605.
  • 2Castro Neto A H, Guinea F, Peres N M R, Novoselov K S and Geim A K 2009 Rev. Mod. Phys. 81 109.
  • 3Han M Y, Ozyilmaz B, Zhang Y and Kim P 2007 Phys. Rev. Lett. 98 206805.
  • 4Chen Z H, Lin Y M, Rooks M J and Avouris P 2007 Physica E 40 228.
  • 5Ozyilmaz B, Jarillo-Herrero P, Efetov D, Abanin D A, Levitov L S and Kim P 2007 Phys. Rev. Lett. 99 166804.
  • 6Li X, Wang X, Zhang L, Lee S and Dai H 2008 Science 319 1229.
  • 7Wang X, Ouyang Y, Li X, Wang H, Guo J and Dai H 2008 Phys. Rev. Lett. 100 206803.
  • 8Son Y W, Cohen M L and Louie S G 2006 Nature 444 347.
  • 9Jayasekera T and Mintmire J W 2007 Nanotechno. 18 424033.
  • 10Rosales L, Orellana P, Barticevic Z and Pacheco M 2008 Microelectr. J. 39 537.

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部