We present a theory for the onset of spin-density-wave order in the superconducting ground state of the cuprates. We compute the scaling dimensions of allowed perturbations of a "relativistic" fixed point with O(4)circle times O(3) symmetry, including those associated with the fermionic nodal Bogoliubov quasiparticles. Analyses of up to six loops show that all perturbations with square lattice symmetry are likely irrelevant. We demonstrate that the fermion spectral functions are primarily damped by the coupling to fluctuations of a composite field with Ising nematic order. A number of other experimental implications are also discussed
The high-Tc cuprate superconductors are close to antiferromagnetic order. Recent mea-surements of ma...
16 pages, 14 figuresInternational audienceWe address the timely issue of the presence of charge orde...
In a variety of materials superconductivity is associated with the existence of a quantum critical p...
We present a theory for the onset of spin density wave order in the superconducting ground state of...
We present a theory for the onset of spin-density-wave order in the superconducting ground state of ...
We study the nature of the two-dimensional quantum critical point separating two phases with and wit...
We show that the superconducting quasiparticle energy of Fe-based superconductors would be different...
We show that a variety of spectral features of high-Tc cuprates can be understood on the basis of th...
We describe two-dimensional quantum spin fluctuations in a superconducting Abrikosov flux lattice in...
This thesis considers various aspects of the interplay between superconductivity and magnetism in st...
12 pages, 6 figures. Published versionInternational audienceIn light of the new experimental and the...
Unlike the hole-doped cuprates, both nodal and nodeless superconductivity (SC) are observed in the e...
A spin density-wave quantum critical point (QCP) is the central organizing principle of organic, iro...
An analysis of three kinds of physical systems exhibiting superconducting properties is presented: t...
Particle-hole condensates in the angular momentum $l=2$ channel, known as $d$-density wave orders, h...
The high-Tc cuprate superconductors are close to antiferromagnetic order. Recent mea-surements of ma...
16 pages, 14 figuresInternational audienceWe address the timely issue of the presence of charge orde...
In a variety of materials superconductivity is associated with the existence of a quantum critical p...
We present a theory for the onset of spin density wave order in the superconducting ground state of...
We present a theory for the onset of spin-density-wave order in the superconducting ground state of ...
We study the nature of the two-dimensional quantum critical point separating two phases with and wit...
We show that the superconducting quasiparticle energy of Fe-based superconductors would be different...
We show that a variety of spectral features of high-Tc cuprates can be understood on the basis of th...
We describe two-dimensional quantum spin fluctuations in a superconducting Abrikosov flux lattice in...
This thesis considers various aspects of the interplay between superconductivity and magnetism in st...
12 pages, 6 figures. Published versionInternational audienceIn light of the new experimental and the...
Unlike the hole-doped cuprates, both nodal and nodeless superconductivity (SC) are observed in the e...
A spin density-wave quantum critical point (QCP) is the central organizing principle of organic, iro...
An analysis of three kinds of physical systems exhibiting superconducting properties is presented: t...
Particle-hole condensates in the angular momentum $l=2$ channel, known as $d$-density wave orders, h...
The high-Tc cuprate superconductors are close to antiferromagnetic order. Recent mea-surements of ma...
16 pages, 14 figuresInternational audienceWe address the timely issue of the presence of charge orde...
In a variety of materials superconductivity is associated with the existence of a quantum critical p...