Pressure study of nematicity and quantum criticality in Sr<SUB>3</SUB>Ru<SUB>2</SUB>O<SUB>7</SUB> for an in-plane field

We study the relationship between the nematic phases of Sr3Ru2O7 and quantum criticality. At ambient pressure, one nematic phase is associated with a metamagnetic quantum critical end point (QCEP) when the applied magnetic field is near the c axis. We show, however, that this metamagnetic transition...

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Detalhes bibliográficos
Autores: Sun, Dan, Wu, W., Grigera, Santiago Andrés, Perry, R. S., Mackenzie, A. P., Julian, S. R.
Tipo de documento: artigo
Estado:Versão publicada
Data de publicação:2013
País:Argentina
Recursos:Universidad Nacional de La Plata
Repositório:SEDICI (UNLP)
Idioma:inglês
OAI Identifier:oai:sedici.unlp.edu.ar:10915/104133
Acesso em linha:http://sedici.unlp.edu.ar/handle/10915/104133
Access Level:Acceso aberto
Palavra-chave:Física
Quantum criticality
Strongly correlated electrons
Descrição
Resumo:We study the relationship between the nematic phases of Sr3Ru2O7 and quantum criticality. At ambient pressure, one nematic phase is associated with a metamagnetic quantum critical end point (QCEP) when the applied magnetic field is near the c axis. We show, however, that this metamagnetic transition does not produce the same nematic signatures when the QCEP is reached by hydrostatic pressure with the field applied in the ab plane. Moreover, a second nematic phase, that is seen for field applied in the ab plane close to, but not right at, a second metamagnetic anomaly, persists with minimal change to the highest applied pressure, 16.55 kbar. Taken together our results suggest that metamagnetic quantum criticality may not be necessary for the formation of a nematic phase in Sr3Ru2O7.