Quantum Phase Transitions in the Itinerant Ferromagnet ZrZn
arXiv:cond-mat/0408424 · doi:10.1103/PhysRevLett.93.256404
Abstract
We report a study of the ferromagnetism of ZrZn, the most promising material to exhibit ferromagnetic quantum criticality, at low temperatures as function of pressure . We find that the ordered ferromagnetic moment disappears discontinuously at =16.5 kbar. Thus a tricritical point separates a line of first order ferromagnetic transitions from second order (continuous) transitions at higher temperature. We also identify two lines of transitions of the magnetisation isotherms up to 12 T in the plane where the derivative of the magnetization changes rapidly. These quantum phase transitions (QPT) establish a high sensitivity to local minima in the free energy in ZrZn, thus strongly suggesting that QPT in itinerant ferromagnets are always first order.