arXiv · cond-mat/9605055
Phonon Emission from a 2D Electron Gas: Evidence of Transition to the Hydrodynamic Regime
Abstract
Using as a thermometer the temperature dependent magneto-transport of a two-dimensional electron gas, we find that effective temperature scales with current as $T_{\rm e} \sim I^a$, where $a=0.4 \pm 2\%$ in the {\it Shubnikov de-Haas} regime, and $0.53 \pm 2\%$ in both the {\it integer and fractional} quantum Hall effect. This implies the phonon energy emission rate changes from the expected $P\sim T^5$ to $P\sim T^4$. We explain this, as well as the dramatic enhancement in phonon emission efficiency using a hydrodynamic model.
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Edmond Chow, H. P. Wei, S. M. Girvin, M. Shayegan. 1996-05-08. Phonon Emission from a 2D Electron Gas: Evidence of Transition to the Hydrodynamic Regime. https://doi.org/10.1103/physrevlett.77.1143
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