activity
20042019
most citedElectronic heat transport for a multiband superconducting gap in SrRuO

7 citations · 21 across the 5 of their papers we have counts for

collaborators

6 papers

cond-mat.supr-con2019

Anisotropic shear stress effects in the basal plane of SrRuO

P. Contreras, Juan Moreno

In this short note, we repeat the calculations the jumps for the specific heat C, the elastic compliance S and the thermal expansion due t…

cond-mat.supr-con20187 cited

Symmetry Field Breaking Effects in SrRuO

Pedro Contreras, Jose Florez, Rafael Almeida

In this work, after reviewing the theory of the elastic properties of Strontium ruthenate, an extension suitable to explain the sound speed experiments of Lupien et. al. \protect\c…

cond-mat.supr-con20187 cited

A numerical calculation of the electronic specific heat for the compound SrRuO below its superconducting transition temperature

Pedro Contreras, Jose Burgos, Ender Ochoa +2

In this work, a numerical study of the superconducting specific heat of the unconventional multiband superconductor Strontium Ruthenate is performed. Two band gaps models are emplo…

cond-mat.supr-con20187 cited

Electronic heat transport for a multiband superconducting gap in SrRuO

P. Contreras

This paper gives a detailed numerical study of the superconducting electronic heat transport in the unconventional multiband superconductor Strontium Ruthenate SrRuO. The s…

cs.IR2012

The Future of Search and Discovery in Big Data Analytics: Ultrametric Information Spaces

Fionn Murtagh, Pedro Contreras

Consider observation data, comprised of n observation vectors with values on a set of attributes. This gives us n points in attribute space. Having data structured as a tree, impli…

cond-mat.supr-con2004

Determining the superconducting gap structure in Sr2RuO4 from sound attenuation studies below Tc

Pedro Contreras, Michael Walker, Kirill Samokhin

This work presents a quantitative theoretical study of the sound attenuation in the unconventional multiband superconductor Sr2RuO4 below the superconducting transition temperature…