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Electron-hole symmetry in a semiconducting carbon nanotube quantum dot

机译:半导体碳纳米管量子点中的电子-空穴对称性

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摘要

Optical and electronic phenomena in solids arise from the behaviour of electrons and holes ( unoccupied states in a filled electron sea). Electron-hole symmetry can often be invoked as a simplifying description, which states that electrons with energy above the Fermi sea behave the same as holes below the Fermi energy. In semiconductors, however, electron-hole symmetry is generally absent, because the energy-band structure of the conduction band differs from the valence band(1). Here we report on measurements of the discrete, quantized-energy spectrum of electrons and holes in a semiconducting carbon nanotube(2). By applying a voltage to a gate electrode, an individual nanotube is filled controllably with a precise number of either electrons or holes, starting from one. The discrete excitation spectrum for a nanotube with N holes is strikingly similar to the corresponding spectrum for N electrons. This observation of near-perfect electron-hole symmetry(3) demonstrates that a semiconducting nanotube can be free of charged impurities, even in the limit of few electrons or holes. We furthermore find an anomalously small Zeeman spin splitting and an excitation spectrum indicating strong electron-electron interactions.
机译:固体中的光学和电子现象是由电子和空穴的行为(充满电子的海洋中的未占据状态)引起的。通常可以将电子-空穴对称性作为简化描述,它指出能量在费米海之上的电子的行为与费米能量以下的空穴相同。然而,在半导体中,由于导带的能带结构不同于价带(1),因此通常不存在电子-空穴对称性。在这里,我们报告了半导体碳纳米管(2)中电子和空穴的离散量化能量谱的测量结果。通过向栅电极施加电压,单个纳米管可控地充满一个或多个精确的电子或空穴。具有N个孔的纳米管的离散激发光谱非常类似于N个电子的对应光谱。对近乎完美的电子-空穴对称性的观察(3)表明,即使在很少的电子或空穴的限制下,半导体纳米管也可以不含带电杂质。我们还发现异常小的塞曼自旋分裂和表明强烈的电子-电子相互作用的激发光谱。

著录项

  • 来源
    《Nature》 |2004年第6990期|p.389-392|共4页
  • 作者单位

    Jarillo-Herrero P, Delft Univ Technol, Kavli Inst Nanosci, POB 5046, NL-2600 GA Delft, Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

    Wires.;

    机译:电线。;

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