Masaq Index
arXiv 2006-06-12 DOI 10.1103/PhysRevB.76.085433 0 views

Phonon runaway in nanotube quantum dots

Siddiqui, L. · Ghosh, A. W. · Datta, S.

Original · EN

We explore electronic transport in a nanotube quantum dot strongly coupled with vibrations and weakly with leads and the thermal environment. We show that the recent observation of anomalous conductance signatures in single-walled carbon nanotube (SWCNT) quantum dots can be understood quantitatively in terms of current driven `hot phonons' that are strongly correlated with electrons. Using rate equations in the many-body configuration space for the joint electron-phonon distribution, we argue that the variations are indicative of strong electron-phonon coupling requiring an analysis beyond the traditional uncorrelated phonon-assisted transport (Tien-Gordon) approach.

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