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Metamagnetic quantum criticality in Sr3Ru2O7 studied by thermal expansion

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arxiv cond-mat/0507359 v3 pith:6S55AUGP submitted 2005-07-15 cond-mat.str-el

classification cond-mat.str-el
keywords expansionmetamagneticquantumthermalcriticalentropypointaccumulation
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abstract

We report low-temperature thermal expansion measurements on the bilayer ruthenate Sr$_3$Ru$_2$O$_7$ as a function of magnetic field applied perpendicular to the Ruthenium-oxide planes. The field-dependence of the c-axis expansion coefficient indicates the accumulation of entropy close to 8 Tesla, related to an underlying quantum critical point. The latter is masked by two first-order metamagnetic transitions which bound a regime of enhanced entropy. Outside this region the singular thermal expansion behavior is compatible with the predictions of the itinerant theory for a two-dimensional metamagnetic quantum critical end point.

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