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- W2023758767 abstract "We performed electric and thermoelectric transport measurements of bilayer graphene in a magnetic field up to 15 Tesla. The transverse thermoelectric conductivity $rmalpha_{xy}$, determined from four transport coefficients, attains a peak value of $rmalpha_{xy, peak}$ whenever chemical potential lies in the center of a Landau level. The temperature dependence of $rmalpha_{xy, peak}$ is dictated by the disorder width $rm W_L$. For $rm k_BT/W_Lleq$0.2, $rmalpha_{xy, peak}$ is nominally linear in temperature, which gives $rmalpha_{xy,peak}/T=0.19 pm 0.03 n A/K^2$ independent of the magnetic field, temperature and Landau Level index. At $rm k_BT/W_Lgeq$0.5, $rmalpha_{xy, peak}$ saturates to a value close to the predicted universal value of $rm 4times(ln2)k_Be/h$ according to the theory of Girvin and Jonson. We remark that an anomaly is found in $rmalpha_{xy}$ near the charge neutral point, similar to that in single-layer graphene" @default.
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- W2023758767 date "2010-09-10" @default.
- W2023758767 modified "2023-09-23" @default.
- W2023758767 title "Transverse thermoelectric conductivity of bilayer graphene in the quantum Hall regime" @default.
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- W2023758767 doi "https://doi.org/10.1103/physrevb.82.121406" @default.
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