Strong interplay of spin and charge/orbital degrees of freedom is the fundamental characteristic of the iron-based superconductors (FeSCs), which leads to the emergence of a nematic state as a rule in the vicinity of the antiferromagnetic state. Despite intense debate for many years, however, whether nematicity is driven by spin or orbital fluctuations remains unsettled. Here, by use of transport, magnetization, and 75As nuclear magnetic resonance (NMR) measurements, we show a striking transformation of the relationship between nematicity and spin fluctuations (SFs) in Na1-x Li x FeAs; For x ≤ 0.02, the nematic transition promotes SFs. In contrast, for x ≥ 0.03, the system undergoes a non-magnetic phase transition at a temperature T 0 into ...
The origin of the nematic phase in the iron-based superconductors is still unknown, and an understan...
Inelastic neutron scattering is employed to investigate the impact of electronic nematic order on th...
We derive the effective action for the collective spin modes in iron-based superconductors. We show ...
The interplay of orbital and spin degrees of freedom is the fundamental characteristic in numerous c...
The interplay of orbital and spin degrees of freedom is the fundamental characteristic in numerous c...
© 2020, The Author(s). The interplay of orbital and spin degrees of freedom is the fundamental chara...
© 2020, The Author(s). The interplay of orbital and spin degrees of freedom is the fundamental chara...
In iron-based superconductors the interactions driving the nematic order (that breaks four-fold rota...
We report a As75 nuclear magnetic resonance study in LaFeAsO single crystals, which undergoes nemati...
Nematic fluctuations occur in a wide range physical systems from biological molecules to cuprates an...
We present 77Se-NMR measurements on FeSe1−xSx samples with sulfur content x=0%, 9%, 15%, and 29%. Tw...
The sulfur-substituted FeSe system, FeSe1−xSx, provides a versatile platform for studying the relati...
In most unconventional superconductors, the importance of antifer- romagnetic fluctuations is widely...
In most unconventional superconductors, the importance of antifer- romagnetic fluctuations is widely...
FeSe is an intriguing iron-based superconductor. It presents an unusual nematic state without magnet...
The origin of the nematic phase in the iron-based superconductors is still unknown, and an understan...
Inelastic neutron scattering is employed to investigate the impact of electronic nematic order on th...
We derive the effective action for the collective spin modes in iron-based superconductors. We show ...
The interplay of orbital and spin degrees of freedom is the fundamental characteristic in numerous c...
The interplay of orbital and spin degrees of freedom is the fundamental characteristic in numerous c...
© 2020, The Author(s). The interplay of orbital and spin degrees of freedom is the fundamental chara...
© 2020, The Author(s). The interplay of orbital and spin degrees of freedom is the fundamental chara...
In iron-based superconductors the interactions driving the nematic order (that breaks four-fold rota...
We report a As75 nuclear magnetic resonance study in LaFeAsO single crystals, which undergoes nemati...
Nematic fluctuations occur in a wide range physical systems from biological molecules to cuprates an...
We present 77Se-NMR measurements on FeSe1−xSx samples with sulfur content x=0%, 9%, 15%, and 29%. Tw...
The sulfur-substituted FeSe system, FeSe1−xSx, provides a versatile platform for studying the relati...
In most unconventional superconductors, the importance of antifer- romagnetic fluctuations is widely...
In most unconventional superconductors, the importance of antifer- romagnetic fluctuations is widely...
FeSe is an intriguing iron-based superconductor. It presents an unusual nematic state without magnet...
The origin of the nematic phase in the iron-based superconductors is still unknown, and an understan...
Inelastic neutron scattering is employed to investigate the impact of electronic nematic order on th...
We derive the effective action for the collective spin modes in iron-based superconductors. We show ...