Science · 2004 · 250 citations · 14 references
Condensed systems of strongly interacting electrons are ideal for the study of quantum complexity. It has become possible to promote the formation of new quantum phases by explicitly tuning systems toward special low-temperature quantum critical points. So far, the clearest examples have been appearances of superconductivity near pressure-tuned antiferromagnetic quantum critical points. We present experimental evidence for the formation of a nonsuperconducting phase in the vicinity of a magnetic field-tuned quantum critical point in ultrapure crystals of the ruthenate metal Sr3Ru2O7, and we discuss the possibility that the observed phase is due to a spin-dependent symmetry-breaking Fermi surface distortion.
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Magnetically mediated superconductivity in heavy fermion compounds
N. D. Mathur, F. M. Grosche, S. R. Julian et al. · Nature · 1998 · 1.6K citations
Heavy Fermion Compounds, Magnetism, Superconducting Material +9
Deconfined Quantum Critical Points
T. Senthil, Ashvin Vishwanath, Leon Balents et al. · Science · 2004 · 1.4K citations · Full text
Continuous quantum phase transitions
S. L. Sondhi, S. M. Girvin, John P. Carini et al. · Reviews of Modern Physics · 1997 · 1.3K citations · Full text