Planar electrical-substitution carbon nanotube cryogenic radiometer

We have developed a fully-lithographic electrical-substitution planar bolometric-radiometer (PBR) that employs multiwall vertically-aligned carbon nanotubes (VACNT) as the absorber and thermistor, micro-machined Si as the weak thermal link and thin-film Mo as the electrical heater. The near-unity ab...

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Veröffentlicht in:Metrologia 2015-04, Vol.52 (2), p.376-383
Hauptverfasser: Tomlin, N A, White, M, Vayshenker, I, Woods, S I, Lehman, J H
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Sprache:eng
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Zusammenfassung:We have developed a fully-lithographic electrical-substitution planar bolometric-radiometer (PBR) that employs multiwall vertically-aligned carbon nanotubes (VACNT) as the absorber and thermistor, micro-machined Si as the weak thermal link and thin-film Mo as the electrical heater. The near-unity absorption of the VACNT over a broad wavelength range permits a planar geometry, compatible with lithographic fabrication. We present performance results on a PBR with an absorption of 0.999 35 at 1550 nm, a thermal conductance of 456 μW K-1 at 4 K and a time constant (1/e) of 7.7 ms. A single measurement of approximately 100 μW optical power at 1550 nm achieved in less than 100 s yields an expanded uncertainty of 0.14% (k = 2). We also observe an elevated superconducting transition temperature of 3.884 K for the Mo heater, which opens the possibility of future devices incorporating more sensitive thermistors and superconducting thin-film wiring.
ISSN:0026-1394
1681-7575
DOI:10.1088/0026-1394/52/2/376