Understanding the strange metal behavior, characterized by linear-in-temperature resistivity, could shed light on the mechanism of unconventional superconductivity. Here, by using electrical resistivity measurements into the micro-Kelvin regime, the authors report evidence of unconventional superconductivity in the strange metal YbRh2Si2 and propose a possible pairing mechanism
The strange-metal phase of cuprate superconductors exhibits a linear in temperature resistivity, how...
Since the milestone experimental discovery by Drozdov et al( 2015 Nature 525 73-6) who reported the ...
Specific heat C(T) and upper critical field Hc2(T) measurements have been performed on two single cr...
International audienceAbstract Some of the highest-transition-temperature superconductors across var...
Quantum phase transitions (QPTs) occur at zero temperature when parameters such as magnetic field or...
Metals have the distinguishing characteristic of an electrical resistivity that decreases with decre...
A comparison was made between four low-temperature properties of LaCu2Si2 and CeCu2Si2. Whereas LaCu...
A comparison was made between four low-temperature properties of LaCu2Si2 and CeCu2Si2. Whereas LaCu...
Although the resistivity in traditional metals increases with temperature, its $T$ dependence vanish...
The discovery of superconducting cuprates in 1986 is considered a watershed moment in the study of s...
Meinert M. Unconventional Superconductivity in YPtBi and Related Topological Semimetals. PHYSICAL RE...
Since the pivotal experimental discovery of near-room-temperature superconductivity (NRTS) in highly...
Strange metal behavior refers to a linear temperature dependence of the electrical resistivity that ...
Recently, we reported on the discovery of superconductivity in YbRh 2 Si 2 at the very low temperatu...
The nature of the antiferromagnetic order in the heavy fermion metal YbRh$_2$Si$_2$, its quantum cri...
The strange-metal phase of cuprate superconductors exhibits a linear in temperature resistivity, how...
Since the milestone experimental discovery by Drozdov et al( 2015 Nature 525 73-6) who reported the ...
Specific heat C(T) and upper critical field Hc2(T) measurements have been performed on two single cr...
International audienceAbstract Some of the highest-transition-temperature superconductors across var...
Quantum phase transitions (QPTs) occur at zero temperature when parameters such as magnetic field or...
Metals have the distinguishing characteristic of an electrical resistivity that decreases with decre...
A comparison was made between four low-temperature properties of LaCu2Si2 and CeCu2Si2. Whereas LaCu...
A comparison was made between four low-temperature properties of LaCu2Si2 and CeCu2Si2. Whereas LaCu...
Although the resistivity in traditional metals increases with temperature, its $T$ dependence vanish...
The discovery of superconducting cuprates in 1986 is considered a watershed moment in the study of s...
Meinert M. Unconventional Superconductivity in YPtBi and Related Topological Semimetals. PHYSICAL RE...
Since the pivotal experimental discovery of near-room-temperature superconductivity (NRTS) in highly...
Strange metal behavior refers to a linear temperature dependence of the electrical resistivity that ...
Recently, we reported on the discovery of superconductivity in YbRh 2 Si 2 at the very low temperatu...
The nature of the antiferromagnetic order in the heavy fermion metal YbRh$_2$Si$_2$, its quantum cri...
The strange-metal phase of cuprate superconductors exhibits a linear in temperature resistivity, how...
Since the milestone experimental discovery by Drozdov et al( 2015 Nature 525 73-6) who reported the ...
Specific heat C(T) and upper critical field Hc2(T) measurements have been performed on two single cr...