Dome of magnetic order inside the nematic phase of sulfur-substituted FeSe under pressure
arXiv:1704.04999 · doi:10.1103/PhysRevB.96.024511
Abstract
The pressure dependence of the structural, magnetic and superconducting transitions and of the superconducting upper critical field were studied in sulfur-substituted Fe(SeS). Resistance measurements were performed on single crystals with three substitution levels (=0.043, 0.096, 0.12) under hydrostatic pressures up to 1.8 GPa and in magnetic fields up to 9 T, and compared to data on pure FeSe. Our results illustrate the effects of chemical and physical pressure on Fe(SeS). On increasing sulfur content, magnetic order in the low-pressure range is strongly suppressed to a small dome-like region in the phase diagrams. However, is much less suppressed by sulfur substitution and of Fe(SeS) exhibits similar non-monotonic pressure dependence with a local maximum and a local minimum present in the low pressure range for all . The local maximum in coincides with the emergence of the magnetic order above . At this pressure the slope of the upper critical field decreases abruptly. The minimum of correlates with a broad maximum of the upper critical field slope normalized by .
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