paper

Magnetic states of the Kondo lattice CePdSi and their pressure evolution

arXiv:2601.20517

Abstract

Frustrated Kondo lattices are ideal platforms for exploring unconventional forms of quantum criticality, as well as magnetism and other emergent phases. Here we report the magnetic properties of the candidate frustrated heavy fermion compound CePdSi, and map their evolution upon applying magnetic fields and hydrostatic pressure. We find that at ambient pressure CePdSi exhibits two distinct magnetic phase transitions, a ferromagnetic-like transition at K and an incommensurate antiferromagnetic transition at K. Upon applying pressure, is continuously suppressed and becomes undetectable above 4.2 GPa, whereas increases and remains robust up to at least 7.5 GPa. The observed pressure evolution of magnetic order in CePdSi suggests the presence of competing magnetic orders, and cannot be simply encapsulated by the Doniach phase diagram, motivating further investigations for its origin, including discerning the role of geometric frustration.

6 pages, 5 figures