English

Structural modulation driven Curie temperature enhancement in Cr-doped SrRuO3

Strongly Correlated Electrons 2024-04-23 v1

Abstract

Strongly correlated system with competing ground states are often poised close to the quantum critical point. External perturbations such as pressure, strain, electric field, and chemical doping can stabilise its ground state with exotic physical properties. Cr-doping is the lone exception which enhances the Curie-temperature in one of such correlated system SrRuO3_3. To find the origin of TCT_C enhancement, we investigate temperature-dependent structure, spectroscopic, magnetic and magnetotransport properties in SrRu1x_{1-x}Crx_xO3_3. Cr-doping squeezes the unit cell volume which effectively enhances the stretching octahedral distortion by nearly five times than pure SrRuO3_3. The Curie temperature increment by \sim 22 K for x = 0.15 is found to be intertwined with the structural-modulation. Temperature-dependent Neutron diffraction analysis indicate that the unit cell volume minima coincide exactly with the enhanced ferromagnetic ordering (\sim 190 K). Further analysis reveals that the effect of Cr-doping not only freezes the octahedral tilt below 100 K but also suppresses the complex magnetism responsible for exchange bias and topological hall effect in SrRuO3_3. The spectroscopic measurements find a reduction of itinerancy of d-electrons with Cr-doping. The magnetotransport measurements portray an evolution from itinerant to localised ferromagnetism.

Keywords

Cite

@article{arxiv.2404.13593,
  title  = {Structural modulation driven Curie temperature enhancement in Cr-doped SrRuO3},
  author = {Pooja and Bikash Saha and Nitesh Choudhary and Pradip K. Maji and A. K. Bera and S. M. Yusuf and Chanchal Sow},
  journal= {arXiv preprint arXiv:2404.13593},
  year   = {2024}
}
R2 v1 2026-06-28T16:01:06.614Z