Evolution of lattice, spin, and charge properties across the phase diagram of FeSe1x

[1]  V. Ivanovski,et al.  Suppression of Superconductivity and Nematic Order in Fe1-ySe1-xSx (0 ≤ x ≤ 1; y ≤ 0.1) Crystals by Anion Height Disorder. , 2020, Inorganic chemistry.

[2]  M. Cazayous,et al.  Lattice-shifted nematic quantum critical point in FeSe1−xSx , 2020, npj Quantum Materials.

[3]  Shangfei Wu,et al.  Quadrupolar charge dynamics in the nonmagnetic FeSe1−xSx superconductors , 2017, Proceedings of the National Academy of Sciences.

[4]  A. Coldea Electronic Nematic States Tuned by Isoelectronic Substitution in Bulk FeSe1−x S x , 2020, Frontiers in Physics.

[5]  Wei Chen,et al.  The Abinit project: Impact, environment and recent developments , 2020, Comput. Phys. Commun..

[6]  T. Devereaux,et al.  Frustrated spin order and stripe fluctuations in FeSe , 2017, Communications Physics.

[7]  H. Kontani,et al.  Abrupt change of the superconducting gap structure at the nematic critical point in FeSe1−xSx , 2017, Proceedings of the National Academy of Sciences.

[8]  M. J. van Setten,et al.  The PseudoDojo: Training and grading a 85 element optimized norm-conserving pseudopotential table , 2017, Comput. Phys. Commun..

[9]  M. Cazayous,et al.  Charge-induced nematicity in FeSe , 2016, Proceedings of the National Academy of Sciences.

[10]  Fuqiang Huang,et al.  Observation of Superconductivity in Tetragonal FeS. , 2015, Journal of the American Chemical Society.

[11]  C. Castro,et al.  Nematic fluctuations and the magneto-structural phase transition in ${\rm Ba(Fe_{1-x}Co_x)_2As_2}$ , 2015, 1507.06116.

[12]  Z. Hussain,et al.  Observation of universal strong orbital-dependent correlation effects in iron chalcogenides , 2015, Nature Communications.

[13]  H. Jeschke,et al.  Effect of magnetic frustration on nematicity and superconductivity in iron chalcogenides , 2015, Nature Physics.

[14]  G. Kotliar,et al.  Kinetic frustration and the nature of the magnetic and paramagnetic states in iron pnictides and iron chalcogenides. , 2011, Nature materials.

[15]  Stefano Curtarolo,et al.  High-throughput electronic band structure calculations: Challenges and tools , 2010, 1004.2974.

[16]  C. Felser,et al.  Electronic and magnetic phase diagram of beta-Fe(1.01)Se with superconductivity at 36.7 K under pressure. , 2009, Nature materials.

[17]  F. Hsu,et al.  Superconductivity in the PbO-type structure α-FeSe , 2008, Proceedings of the National Academy of Sciences.

[18]  W. Spengler,et al.  First and second order Raman scattering in transition metal compounds , 1976 .