Oral presentation given at the APS March Meeting 2015, held on March 2-6th, 2015, in San Antonio (Texas, US). Session W5: Focus Session: Magnetism and Transport in Fe-Based Superconductors.Optical conductivity is one of the tools traditionally used to study strongly correlated systems. For single band systems, the interpretation of these data is rather straightforward and very well known. This is not the case for multiorbital systems, where electronic interactions lead to nontrivial features in the optical spectrum. We have studied the case of iron superconductors by means of a model that introduces the orbital dependent interactions. We find that interband transitions make a non-negligible contribution to the low-energy plateau found in th...
Iron-based superconductors have been found to exhibit an intimate interplay of orbital, spin, and la...
The bad metal behavior in the normal state of the iron-based superconduc-tors suggests an intimate c...
This thesis is focused on the optical investigation of materials which exhibit novel electronic and ...
Colloquium given at California State University on October 6, 2014.Discovery of iron based high temp...
Presentation given at the Strong Correlations and Unconventional Superconductivity: Towards a Concep...
The diversities in crystal structures and ways of doping result in extremely diversified phase diagr...
We investigate the superconducting fluctuation optical conductivity using the time-dependent Ginzbur...
During the past two decades intensive experimental and theoretical effort has progressed our knowled...
This dissertation presents infrared and magneto-optical spectroscopy experiments that probe emergent...
Fermi liquid theory is remarkably successful in describing the transport and optical properties of m...
We report an angle-resolved photoemission study of a series of hole- and electron-doped iron-based s...
Recent development in the physics of high-temperature superconductivity (SC) is reviewed, with speci...
We demonstrate that most features ascribed to strong correlation effects in various spectroscopies o...
Despite the fact that the Fe-based superconductors (FeSCs) were discovered nearly 10 years ago, the ...
Since their discovery in 1986, the high-temperature copper-oxide superconductors have been a central...
Iron-based superconductors have been found to exhibit an intimate interplay of orbital, spin, and la...
The bad metal behavior in the normal state of the iron-based superconduc-tors suggests an intimate c...
This thesis is focused on the optical investigation of materials which exhibit novel electronic and ...
Colloquium given at California State University on October 6, 2014.Discovery of iron based high temp...
Presentation given at the Strong Correlations and Unconventional Superconductivity: Towards a Concep...
The diversities in crystal structures and ways of doping result in extremely diversified phase diagr...
We investigate the superconducting fluctuation optical conductivity using the time-dependent Ginzbur...
During the past two decades intensive experimental and theoretical effort has progressed our knowled...
This dissertation presents infrared and magneto-optical spectroscopy experiments that probe emergent...
Fermi liquid theory is remarkably successful in describing the transport and optical properties of m...
We report an angle-resolved photoemission study of a series of hole- and electron-doped iron-based s...
Recent development in the physics of high-temperature superconductivity (SC) is reviewed, with speci...
We demonstrate that most features ascribed to strong correlation effects in various spectroscopies o...
Despite the fact that the Fe-based superconductors (FeSCs) were discovered nearly 10 years ago, the ...
Since their discovery in 1986, the high-temperature copper-oxide superconductors have been a central...
Iron-based superconductors have been found to exhibit an intimate interplay of orbital, spin, and la...
The bad metal behavior in the normal state of the iron-based superconduc-tors suggests an intimate c...
This thesis is focused on the optical investigation of materials which exhibit novel electronic and ...