Energy loss of the electron system in individual single-walled carbon nanotubes.

Santavicca, Daniel F; Chudow, Joel D; Prober, Daniel E; Purewal, Meninder S; Kim, Philip · Nano Lett · 2010

basic_science · Level V

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Abstract

We characterize the energy loss of the nonequilibrium electron system in individual metallic single-walled carbon nanotubes at low temperature. Using Johnson noise thermometry, we demonstrate that, for a nanotube with Ohmic contacts, the dc resistance at finite bias current directly reflects the average electron temperature. This enables a straightforward determination of the thermal conductance associated with cooling of the nanotube electron system. In analyzing the temperature- and length-dependence of the thermal conductance, we consider contributions from acoustic phonon emission, optical phonon emission, and hot electron outdiffusion.

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