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The electron-hole plasma in charge-neutral graphene is predicted to realize a quantum critical system whose transport features a universal hydrodynamic description, even at room temperature.
Hydrodynamic effects in solids at low temperature
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Using a magnetometer to image a two?dimensional current distribution
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Why does the quarkÐgluon plasma at RHIC behave as a nearly ideal fluid?
Shuryak, E · 2004
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Viscosity in strongly interacting quantum field theories from black hole physics
Kovtun, P. K., Son, D. T. & Starinets, A. O · 2005
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Quantum critical scaling in graphene
Sheehy, D. E. & Schmalian, J · 2007
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Conformal relativistic viscous hydrodynamics: Applications to RHIC results at s 𝑁𝑁 = 200 \sqrt{{s}_{\mathit{NN}}}=200 Gev
Luzum, M. & Romatschke, P · 2008
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Graphene: A nearly perfect fluid
Mller, M., Schmalian, J. & Fritz, L · 2009
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Quantum criticality
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A robust scanning diamond sensor for nanoscale imaging with single nitrogen-vacancy centres
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Nowack, K. C. et al · 2013
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One-dimensional electrical contact to a two-dimensional material
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Scanning diamond NV center probes compatible with conventional AFM technology
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Direct reconstruction of two-dimensional currents in thin films from magnetic-field measurements
Meltzer, A. Y., Levin, E. & Zeldov, E · 2017
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Fluidity onset in graphene
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Planckian dissipation, minimal viscosity and the transport in cuprate strange metals
Zaanen, J · 2018
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Thermal and electrical signatures of a hydrodynamic electron fluid in tungsten diphosphide
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Gooth, J. et al · 2018
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Hydrodynamics of electrons in graphene
Lucas, A. & Fong, K. C · 2018
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Crystallographic orientation dependent reactive ion etching in single crystal diamond
Xie, L., Zhou, T. X., Sthr, R. J. & Yacoby, A · 2018
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Measuring hall viscosity of grapheneÕs electron fluid
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Quantum-critical conductivity of the dirac fluid in graphene
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in preparation (2019)
Shin, Y. J. & al, e · 2019
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