Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session A40: Graphene Properties
8:00 AM–11:00 AM,
Monday, March 5, 2018
LACC
Room: 501C
Sponsoring
Unit:
DCMP
Chair: Qiong Ma, Massachusetts Institute of Technology-MIT
Abstract ID: BAPS.2018.MAR.A40.1
Abstract: A40.00001 : Microscopic theory for electron hydrodynamics in monolayer and bilayer graphene*
8:00 AM–8:12 AM
Presenter:
Derek Ho
(Natl Univ of Singapore)
Authors:
Derek Ho
(Natl Univ of Singapore)
Indra Yudhistira
(Natl Univ of Singapore)
Nilotpal Chakraborty
(Yale-NUS College)
Shaffique Adam
(Yale-NUS College and Natl Univ of Singapore)
Electrons behave like a classical fluid with a momentum distribution function that varies slowly in space and time when the quantum mechanical carrier-carrier scattering dominates over all other scattering processes. Recent experiments in monolayer and bilayer graphene have reported signatures of such hydrodynamic electron behavior in ultra-clean devices. In this theoretical work, starting from a microscopic treatment of electron-electron, electron-phonon and electron-impurity interactions within the Random Phase Approximation, we demonstrate that monolayer and bilayer graphene both host two different hydrodynamic regimes. We predict that the hydrodynamic window in bilayer graphene is stronger than in monolayer graphene, and has a characteristic `v-shape' as opposed to a `lung-shape'. Finally, we collapse experimental data onto a universal disorder-limited theory, thereby proving that the observed violation of Wiedemann-Franz law in monolayers occurs in a regime dominated by impurity-induced electron-hole puddles.
*We acknowledge the support of the National Research Foundation of Singapore under its Fellowship program (NRF-NRFF2012-01).
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.A40.1
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