Microscopic mechanisms of externally controlled reversable heat flow through the carbon nanotube junctions (NJ) are studied theoretically. Our model suggests that the heat is transfered along the tube section T by electrons (e) and holes (h) moving ballistically in either in parallel or in opposite directions and accelerated by the bias source-drain voltage VSD (Peltier effect). We compute the Seebeck coefficient α, electric σ and thermal κ conductivities and find that their magnitudes strongly depend on VSD and VG. The sign reversal of α versus the sign of VG formerly observed experimentally is interpreted in this work in terms of so-called chiral tunneling phenomena (Klein paradox).
@article{arxiv.0809.4375,
title = {Reversable heat flow through the carbon nanotube junctions},
author = {S. E. Shafranjuk},
journal= {arXiv preprint arXiv:0809.4375},
year = {2015}
}