paper

Restored strange metal phase through suppression of charge density waves in underdoped YBaCuO

arXiv:2009.08398 · doi:10.1126/science.abc8372

Abstract

The normal state of optimally doped cuprates is dominated by the "strange metal" phase that shows a linear temperature () dependence of the resistivity persisting down to the lowest . For underdoped cuprates this behavior is lost below the pseudogap temperature , where Charge Density Waves (CDW) together with other intertwined local orders characterize the ground state. Here we show that the -linear resistivity of highly strained, ultrathin and underdoped YBaCuO films is restored when the CDW amplitude, detected by Resonant Inelastic X-ray scattering, is suppressed. This observation points towards an intimate connection between the onset of CDW and the departure from -linear resistivity in underdoped cuprates. Our results illustrate the potential of using strain control to manipulate the ground state of quantum materials.