Disorder promotes ferromagnetism: Rounding of the quantum phase transition in Sr_{1-x}Ca_xRuO_3
arXiv:1202.3810 · doi:10.1103/PhysRevLett.108.185701
Abstract
The subtle interplay of randomness and quantum fluctuations at low temperatures gives rise to a plethora of unconventional phenomena in systems ranging from quantum magnets and correlated electron materials to ultracold atomic gases. Particularly strong disorder effects have been predicted to occur at zero-temperature quantum phase transitions. Here, we demonstrate that the composition-driven ferromagnetic-to-paramagnetic quantum phase transition in Sr1-xCaxRuO3 is completely destroyed by the disorder introduced via the different ionic radii of the randomly distributed Sr and Ca ions. Using a magneto-optical technique, we map the magnetic phase diagram in the composition-temperature space. We find that the ferromagnetic phase is significantly extended by the disorder and develops a pronounced tail over a broad range of the composition x. These findings are explained by a microscopic model of smeared quantum phase transitions in itinerant magnets. Moreover, our theoretical study implies that correlated disorder is even more powerful in promoting ferromagnetism than random disorder.
15 pages, 4 figures, submitted to Phys. Rev. Lett
References in corpus (8)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Rare region effects at classical, quantum, and non-equilibrium phase transitions
- Quantum Griffiths effects and smeared phase transitions in metals: theory and experiment
- Kondo-Cluster-Glass State near a Ferromagnetic Quantum Phase Transition
- Quantum Griffiths Phase in the weak itinerant ferromagnetic alloy NiV
- Discovery of Griffiths phase in itinerant magnetic semiconductor Fe_{1-x}Co_xS_2
- Soft x-ray magnetic circular dichroism study of Ca_1-xSr_xRuO_3 across the ferromagnetic quantum phase transition
- Composition-tuned smeared phase transitions
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