Carbon Nanotube Quantum Resistors

Stefan Frank, Philippe Poncharal, Z. L. Wang, Walt A. de Heer

1998Published
1.9KCitations
0References
journal articleType

Abstract

The conductance of multiwalled carbon nanotubes (MWNTs) was found to be quantized. The experimental method involved measuring the conductance of nanotubes by replacing the tip of a scanning probe microscope with a nanotube fiber, which could be lowered into a liquid metal to establish a gentle electrical contact with a nanotube at the tip of the fiber. The conductance of arc-produced MWNTs is one unit of the conductance quantum G 0 = 2 e 2 / h = (12.9 kilohms) โ€“1 . The nanotubes conduct current ballistically and do not dissipate heat. The nanotubes, which are typically 15 nanometers wide and 4 micrometers long, are several orders of magnitude greater in size and stability than other typical room-temperature quantum conductors. Extremely high stable current densities, J > 10 7 amperes per square centimeter, have been attained.

Journal: Science

Publisher: American Association for the Advancement of Science (AAAS)

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