Standard models for simple metals and insulators often fail for systems based on elements with unstable d- or f-electron shells, where strong electronic correlations can generate new and unexpected states of matter. Such a scenario can often be induced when a magnetic phase transition is tuned to absolute zero temperature by an external control parameter such as chemical composition, pressure or magnetic field. At the resulting quantum critical point (QCP), emergent phenomena, such as unconventional superconductivity and novel magnetic phases are frequently observed. The temperature and energy dependences of the physical properties are also found to deviate from expectations for a simple Fermi liquid. This “non-Fermi-liquid” (NFL) behavior ...
We calculate analytically the low-temperature quasi-particle scattering rate, the conductivity, and ...
When a 2D superconductor is subjected to a strong in-plane magnetic field, Zeeman polarization of th...
When a 2D superconductor is subjected to a strong in-plane magnetic field, Zeeman polarization of th...
The term Fermi liquid is almost synonymous with the metallic state. The association is known to brea...
We critically examine the non-Fermi liquid (NFL) behavior observed in heavy fermion systems located ...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
We measured the specific heat and resistivity of heavy fermion [Formula presented] between the super...
A quantum critical point (QCP) occurs upon chemical doping of the weak itinerant ferromagnet Sc_{3.1...
A quantum critical point (QCP) occurs upon chemical doping of the weak itinerant ferromagnet Sc 3.1...
A quantum critical point (QCP) occurs upon chemical doping of the weak itinerant ferromagnet Sc3.1In...
Using determinantal quantum Monte Carlo, we compute the properties of a lattice model with spin 1/2 ...
We revisit the interplay between superconductivity and quantum criticality when thermal effects from...
For almost forty years our comprehension of the metallic behavior in many materials has been founded...
A two-dimensional itinerant antiferromagnet near quantum critical point was investigated for non-fer...
We calculate analytically the low-temperature quasi-particle scattering rate, the conductivity, and ...
When a 2D superconductor is subjected to a strong in-plane magnetic field, Zeeman polarization of th...
When a 2D superconductor is subjected to a strong in-plane magnetic field, Zeeman polarization of th...
The term Fermi liquid is almost synonymous with the metallic state. The association is known to brea...
We critically examine the non-Fermi liquid (NFL) behavior observed in heavy fermion systems located ...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
Quantum criticality arises from continuous changes of matter at absolute zero temperature. It can ha...
We measured the specific heat and resistivity of heavy fermion [Formula presented] between the super...
A quantum critical point (QCP) occurs upon chemical doping of the weak itinerant ferromagnet Sc_{3.1...
A quantum critical point (QCP) occurs upon chemical doping of the weak itinerant ferromagnet Sc 3.1...
A quantum critical point (QCP) occurs upon chemical doping of the weak itinerant ferromagnet Sc3.1In...
Using determinantal quantum Monte Carlo, we compute the properties of a lattice model with spin 1/2 ...
We revisit the interplay between superconductivity and quantum criticality when thermal effects from...
For almost forty years our comprehension of the metallic behavior in many materials has been founded...
A two-dimensional itinerant antiferromagnet near quantum critical point was investigated for non-fer...
We calculate analytically the low-temperature quasi-particle scattering rate, the conductivity, and ...
When a 2D superconductor is subjected to a strong in-plane magnetic field, Zeeman polarization of th...
When a 2D superconductor is subjected to a strong in-plane magnetic field, Zeeman polarization of th...