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Dynamic admittance of carbon nanotube-based molecular electronic devices and their equivalent electric circuit

  • Chi Yung Yam
  • , Yan Mo
  • , Fan Wang
  • , Xiaobo Li
  • , Guan Hua Chen
  • , Xiao Zheng
  • , Yuki Matsuda
  • , Jamil Tahir-Kheli
  • , William A. Goddard
  • University of Hong Kong
  • The Hong Kong University of Science and Technology
  • California Institute of Technology

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

We use first-principles quantum mechanics to simulate the transient electrical response through carbon nanotube-based conductors under time-dependent bias voltages. The dynamic admittance and time-dependent charge distribution are reported and analyzed. We find that the electrical response of these two-terminal molecular devices can be mapped onto an equivalent classical electric circuit and that the switching time of these end-on carbon nanotube devices is only a few femtoseconds. This result is confirmed by studying the electric response of a simple two-site model device and is thus generalized to other two-terminal molecular electronic devices.

langue originaleAnglais
Numéro d'article495203
journalNanotechnology
Volume19
Numéro de publication49
Les DOIs
étatPublié - 10 déc. 2008
Modification externeOui

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