Transient behavior of full counting statistics in thermal transport
arXiv:1106.5121 · doi:10.1103/PhysRevB.84.153412
Abstract
The generating function of energy counting statistics is derived for phononic junction systems. It is expressed in terms of the contour-ordered self-energy of the lead with shifted arguments, , where is the usual contour-ordered self-energy of the left lead. The cumulants of the energy transferred in a given time from the lead to the center is obtained by taking derivatives. A transient result of the first four cumulants of a graphene junction is presented. It is found that measurements cause the energy to flow into the lead.
4 pages, 2 figures
References in corpus (10)
- Quantum thermal transport in nanostructures
- Nonequilibrium Green's Function Approach to Phonon Transport in Defective Carbon Nanotubes
- Universal oscillations in counting statistics
- Berry-Phase induced Heat Pumping and its Impact on the Fluctuation Theorem
- Symmetry in Full Counting Statistics, Fluctuation Theorem, and Relations among Nonlinear Transport Coefficients in the Presence of a Magnetic Field
- Full counting statistics for noninteracting fermions: Exact results and the Levitov-Lesovik formula
- Statistics of work performed on a forced quantum oscillator
- Nonlinear effects of phonon fluctuations on transport through nanoscale junctions
- Full counting statistics of Luttinger liquid conductor
- Tunable heat pump by modulating the coupling to the leads
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