most citedDirect visualization of phase separation between superconducting and nematic domains in Co-doped CaFe2As2 close to a first order phase transition

17 citations · 49 across the 4 of their papers we have counts for

collaborators

5 papers

physics.app-ph201911 cited

Tailored Graphenic Structures Directly Grown on Titanium Oxide Boost the Interfacial Charge Transfer

Roberto Munoz, Carlos Sanchez-Sanchez, Pablo Merino +7

The successful application of titanium oxide-graphene hybrids in the fields of photocatalysis, photovoltaics and photodetection strongly depends on the interfacial contact between…

cond-mat.supr-con2019

Observation of a gel of quantum vortices in a superconductor at very low magnetic fields

José Benito Llorens, Lior Embon, Alexandre Correa +13

A gel consists of a network of particles or molecules formed for example using the sol-gel process, by which a solution transforms into a porous solid. Particles or molecules in a…

cond-mat.mtrl-sci201913 cited

Structural characterization of as-grown and quasi-free standing graphene layers on SiC

R. A. Bueno, I. Palacio, C. Munuera +6

We report on a comparative structural characterization of two types of high quality epitaxial graphene layers grown by CVD on 4H-SiC(0001). The layers under study are a single laye…

cond-mat.supr-con201717 cited

Direct visualization of phase separation between superconducting and nematic domains in Co-doped CaFe2As2 close to a first order phase transition

Antón Fente, Alexandre Correa-Orellana, Anna E. Böhmer +9

We show that biaxial strain induces alternating tetragonal superconducting and orthorhombic nematic domains in Co substituted CaFe2As2. We use Atomic Force, Magnetic Force and Scan…

physics.ins-det20178 cited

Lithography-free electrical transport measurements on 2D materials by direct microprobing

Patricia Gant, Yue Niu, Simon A. Svatek +6

We present a method to carry out electrical and opto-electronic measurements on 2D materials using carbon fiber microprobes to directly make electrical contacts to the 2D materials…