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Carbon nanotube based bolometer

Tarasov, M. ; Svensson, J. LU ; Weis, J. LU ; Kuzmin, L. and Campbell, E. LU (2006) In JETP Letters 84(5). p.267-270
Abstract

The contacts of single carbon nanotubes and bundles of carbon nanotubes with superconducting and metallic electrodes are investigated in order to create bolometers and electron coolers. Tunneling contacts of the carbon nanotubes with aluminum electrodes are obtained. The current-voltage characteristics of junctions are analyzed for temperatures from room temperature to 300 mK. The resistance of individual nanotubes is primarily determined by defects and is too large for applications. The use of the bundles of carbon nanotubes makes it possible to considerably reduce the resistance of the bolometer, which is determined by a small number of conducting tubes with good tunneling contacts with the electrodes. The energy gap is equal to... (More)

The contacts of single carbon nanotubes and bundles of carbon nanotubes with superconducting and metallic electrodes are investigated in order to create bolometers and electron coolers. Tunneling contacts of the carbon nanotubes with aluminum electrodes are obtained. The current-voltage characteristics of junctions are analyzed for temperatures from room temperature to 300 mK. The resistance of individual nanotubes is primarily determined by defects and is too large for applications. The use of the bundles of carbon nanotubes makes it possible to considerably reduce the resistance of the bolometer, which is determined by a small number of conducting tubes with good tunneling contacts with the electrodes. The energy gap is equal to hundreds and tens of millivolt in the former and latter cases, respectively. Structures containing bundles of carbon nanotubes can be described in a model with a Schottky barrier. The samples with bundles of carbon nanotubes exhibit the bolometric response to external high-frequency radiation at a frequency of 110 GHz with an amplitude up to 100 μV and a temperature voltage response to 0.4 mV/K.

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publishing date
type
Contribution to journal
publication status
published
subject
in
JETP Letters
volume
84
issue
5
pages
4 pages
publisher
Springer
external identifiers
  • scopus:33750913701
ISSN
0021-3640
DOI
10.1134/S0021364006170085
language
English
LU publication?
no
id
67321d73-6e9a-4d21-a5e5-50b729734dda
date added to LUP
2020-05-05 12:18:50
date last changed
2022-02-01 06:02:43
@article{67321d73-6e9a-4d21-a5e5-50b729734dda,
  abstract     = {{<p>The contacts of single carbon nanotubes and bundles of carbon nanotubes with superconducting and metallic electrodes are investigated in order to create bolometers and electron coolers. Tunneling contacts of the carbon nanotubes with aluminum electrodes are obtained. The current-voltage characteristics of junctions are analyzed for temperatures from room temperature to 300 mK. The resistance of individual nanotubes is primarily determined by defects and is too large for applications. The use of the bundles of carbon nanotubes makes it possible to considerably reduce the resistance of the bolometer, which is determined by a small number of conducting tubes with good tunneling contacts with the electrodes. The energy gap is equal to hundreds and tens of millivolt in the former and latter cases, respectively. Structures containing bundles of carbon nanotubes can be described in a model with a Schottky barrier. The samples with bundles of carbon nanotubes exhibit the bolometric response to external high-frequency radiation at a frequency of 110 GHz with an amplitude up to 100 μV and a temperature voltage response to 0.4 mV/K.</p>}},
  author       = {{Tarasov, M. and Svensson, J. and Weis, J. and Kuzmin, L. and Campbell, E.}},
  issn         = {{0021-3640}},
  language     = {{eng}},
  month        = {{11}},
  number       = {{5}},
  pages        = {{267--270}},
  publisher    = {{Springer}},
  series       = {{JETP Letters}},
  title        = {{Carbon nanotube based bolometer}},
  url          = {{http://dx.doi.org/10.1134/S0021364006170085}},
  doi          = {{10.1134/S0021364006170085}},
  volume       = {{84}},
  year         = {{2006}},
}