Piezoresistivity as a Fingerprint of Ferroaxial Transitions
Ezra Day-Roberts1,2, Rafael M Fernandes1, Turan Birol2
1University of Minnesota, School of Physics and Astronomy, Minneapolis, Minnesota 55455, USA.
Abstract:
Recent progress in the understanding of the collective behavior of electrons and ions has revealed new types of ferroic orders beyond ferroelectricity and ferromagnetism, such as the ferroaxial state. The latter retains only rotational symmetry around a single axis and reflection symmetry with respect to a single mirror plane, both of which are set by an emergent electric toroidal dipole moment. Because of this unusual symmetry-breaking pattern, it has been challenging to directly measure the ferroaxial order parameter, despite the increasing attention this state has drawn. Here, we show that off-diagonal components of the piezoresistivity tensor (i.e., the linear change in resistivity under strain) transform the same way as the ferroaxial moments, providing a direct probe of such order parameters. We identify two new proper ferroaxial materials through a materials database search, and use first-principles calculations to evaluate the piezoconductivity of the double-perovskite CaSnF_{6}, revealing its connection to ferroaxial order and to octahedral rotation modes.


