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Quantum Transport and Interaction in Carbon Nanotubes

Research Project

Project/Area Number 10640300
Research Category

Grant-in-Aid for Scientific Research (C)

Allocation TypeSingle-year Grants
Section一般
Research Field 固体物性Ⅰ(光物性・半導体・誘電体)
Research InstitutionUniversity of Tokyo

Principal Investigator

ANDO Tsuneya  University of Tokyo, Institute for Solid State Physics, Professor, 物性研究所, 教授 (90011725)

Project Period (FY) 1998 – 2000
Project Status Completed (Fiscal Year 2000)
Budget Amount *help
¥3,600,000 (Direct Cost: ¥3,600,000)
Fiscal Year 2000: ¥600,000 (Direct Cost: ¥600,000)
Fiscal Year 1999: ¥1,000,000 (Direct Cost: ¥1,000,000)
Fiscal Year 1998: ¥2,000,000 (Direct Cost: ¥2,000,000)
KeywordsCarbon Nanotubes / 2D graphite / herical fashion / Electric properties / transport properties / semiconductor / Effective Mass approximation / 有効ハミルトニアン / Weylの方程式で / 強束縛模型 / コンダクタンスの量子化 / グラファイト / 擬1次元物質 / 半導体ヘテロ構造 / トポロジー
Research Abstract

Graphite needles called carbon nanotubes (CN's) were discovered recently and have been a subject of an extensive study. A CN is a few concentric tubes of two-dimensional (2D) graphite consisting of carbon-atom hexagons arranged in a helical fashion about the axis. The diameter of CN's is usually between 20 and 300 Å and their length can exceed 1μm. The distance of adjacent sheets or walls is larger than the distance between nearest neighbor atoms in a graphite sheet and therefore electronic properties of CN's are dominatecl by those of a single layer CN.A single-wall nanotubes are produced in a form of ropes. The purpose of this project is to study electronic and transport properties of carbon nanotubes theoretically.
Carbon nanotubes can be either a metal or semiconductor, depending on their diameters and helical arrangement. The condition whether a CN is metallic or semi-conducting can be obtained based on the band structure of a 2D graphite sheet and periodic boundary conditions along the circumference direction. This result was first predicted by means of a tight-binding model ignoring the effect of the tube curvature
These properties can be well reproduced in a k p method or an effective-mass approximation. In fact, the effective-mass scheme has been used successfully in the study of wide varieties of electronic properties of CN.In this project we have discussed transport properties of nanotubes based on the k p method combined with a tight-binding model. Effects of impurity scattering have been studied and the total absence of backward scattering has been pointed out except for scatterers with a potential range smaller than the lattice constant. The conductance quantization in the presence of lattice vacancies, i.e., strong and short-range scatterers, has been predicted. The transport across a junction of nanotubes with different diameters through a pair of topological defects such as five-and seven-membered rings has also been clarified.

Report

(4 results)
  • 2000 Annual Research Report   Final Research Report Summary
  • 1999 Annual Research Report
  • 1998 Annual Research Report
  • Research Products

    (30 results)

All Other

All Publications (30 results)

  • [Publications] T.Nakanishi: "Conductance Quantization in the Presence of Huge and Short-Range Potential in Carbon Nanotubes"Physica E. 6. 872-875 (2000)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] H.Suzuura: "Huge Magneto-Resistance by Phonon Scattering in Carbon Nanotubes"Physica E. 6. 864-867 (2000)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] T.Ando: "Theory of Transport in Carbon Nanotubes"Senicond.Sci.& Technol.. 15. R13-R27 (2000)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] H.Matsumura: "Topological Effects on Conductance of Nanotubes"Mol.Cryst.Liq.Cryst.. 340. 725-730 (2000)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] M.Igami: "Effect of Lattice Vacancy in Conductance of Carbon Nanotubes"Mol.Cryst.Liq.Cryst.. 340. 1746-1747 (2000)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] T.Ando: "Spin-Orbit Interaction in Carbon Nanotubes"J.Phys.Soc.Jpn.. 69. 1757-1763 (2000)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] T.Nakanishi, M.Igami, and T.Ando: "Conductance Quantization in the Presence of Huge And Short-Range Potential in Carbon Nanotubes"Physica E. 6. 872-875 (2000)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] H.Suzuura and T.Ando: "Huge Magneto-Resistance by Phonon Scattering in Carbon Nanotubes"Physica E. 6. 864-867 (2000)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] T.Ando: "Theory of Transport in Carbon Nanotubes"Semicond.Sci. & Technol.. 15. R13-R27 (2000)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] H.Matsumura and T.Ando: "Topological Effects on Carbon Nanotubes"Mol.Cryst.Liq.Cryst.. 340. 725-730 (2000)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] M.Igami, T.Nakanishi, and T.Ando: "Effect of Lattice Vacancy in Conductance of Carbon Nanotubes"Mol.Cryst.Liq.Cryst.. 340. 1746-1747 (2000)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] T.Ando: "Spin-Orbit Interaction in Carbon Nanotubes"J.Phys.Soc.Jpn.. 69. 1757-1763 (2000)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2000 Final Research Report Summary
  • [Publications] T.Nakanishi: "Conductance Quantization in the Presence of Huge and Short-Range Potential in Carbon Nanotubes"Physica E . 6. 872-875 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] H.Suzuura: "Huge Magneto-Resistance by Phonon Scattering in Carbon Nanotubes"Physica E. 6. 864-867 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] T.Ando: "Theory of Transport in Carbon Nanotubes"Semicond.Sci.& Technol.. 15. R13-R27 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] H.Matsumura: "Topological Effects on Conductance of Nanotubes"Mol.Cryst.Liq.Cryst.. 340. 725-730 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] M.Igami: "Effect of Lattice Vacancy in Conductance of Carbon Nanotubes"Mol.Cryst.Liq.Cryst.. 284-288. 1746-1747 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] T.Ando: "Spin-Orbit Interaction in Carbon Nanotubes"J.Phys.Soc.Jpn.. 69・6. 1757-1763 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] M. Igami: "Numerical Study of Tranport in Carbon Nanotubes with Lattice Vacancy"J. Phys. Soc. Jpn.. 68・10. 3146-3149 (1999)

    • Related Report
      1999 Annual Research Report
  • [Publications] T. Ando: "Effective-Mass Theory of Carbon Nanotubes with Vacancy"J. Phys. Soc. Jpn.. 68・12. 3994-4008 (1999)

    • Related Report
      1999 Annual Research Report
  • [Publications] H. Suzuura: "Huge Magneto-Resistance by Phonon Scattering in Carbon Nanotubes"Physica E. (in press). (2000)

    • Related Report
      1999 Annual Research Report
  • [Publications] T. Ando: "Conductance Quantization in Carbon Nanotubes : Neutrions on Cylinder Surface"Microelectronics Engineering. 47. 421-423 (2000)

    • Related Report
      1999 Annual Research Report
  • [Publications] H.Matsumura: "Topological Effects on Conductance of Nanotubes"Mol.Cryst.Liq.Cryst.. (in press).

    • Related Report
      1999 Annual Research Report
  • [Publications] 安藤恒也: "カーボンナノチューブ"固体物理. 34・5. 399-410 (1999)

    • Related Report
      1999 Annual Research Report
  • [Publications] T.Ando: "Impurity Scattering in Carbon Nantubes -Absence of Back Scattering" J.Phys.Soc.Jpn.67・5. 1704-1713 (1998)

    • Related Report
      1998 Annual Research Report
  • [Publications] T.Nakanishi: "Scattering by Topological Disorder in Connected Carbon Nanotubes in Magnetic Fields" Physica B. 249-251. 136-139 (1998)

    • Related Report
      1998 Annual Research Report
  • [Publications] N.H.Shon: "Quantum Transport in Two-Dimensional Graphite System" J.Phys.Soc.Jpn.67・7. 2421-2429 (1998)

    • Related Report
      1998 Annual Research Report
  • [Publications] T.Ando: "Berry's Phase and Absence of Back Scattering in Carbon Nanotubes" J.Phys.Soc.Jpn.67・8. 2857-2862 (1998)

    • Related Report
      1998 Annual Research Report
  • [Publications] H.Matsumura: "Effective-Mass Theory of Carbon Nanotube Junctions" J.Phys.Soc.Jpn.67・10. 3542-3551 (1998)

    • Related Report
      1998 Annual Research Report
  • [Publications] H.Ajiki: "Science and Technology of Carbon Nanotubes" Elsevier Science (Oxford) (in press), (1999)

    • Related Report
      1998 Annual Research Report

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Published: 1998-04-01   Modified: 2020-05-15  

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