Active nematics show activity-independent linearized temperature correlations in homogeneous states but develop inhomogeneous temperature profiles under confinement during spontaneous flow transitions.
The keydifferencewithourapproachtotemperatureisthatthe energy balance equation we consider accounts for the fuel consumption that gives rise to activity
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On the temperature of an active nematic
Active nematics show activity-independent linearized temperature correlations in homogeneous states but develop inhomogeneous temperature profiles under confinement during spontaneous flow transitions.