Reversible Tuning of the Collapsed Tetragonal Phase Transition in CaFe2As2 by Separate Control of Chemical Pressure and Electron Doping
arXiv:1510.03646 · doi:10.1103/PhysRevB.92.235132
Abstract
Single crystals of Ca(Fe1-xRux)2As2 (0<x<0.065) and Ca1-yLay(Fe0.973Ru0.027)2As2 (0<y<0.2) have been synthesized and studied with respect to their structural, electronic and magnetic properties. The partial substitution of Fe by Ru induces a decrease of the c-axis constant leading for x<0.023 to a suppression of the coupled magnetic and structural (tetragonal to orthorhombic) transitions. At x_cr=0.023 a first order transition to a collapsed tetragonal (CT) phase is found, which behaves like a Fermi liquid and which is stabilized by further increase of x. The absence of superconductivity near x_cr is consistent with truly hydrostatic pressure experiments on undoped CaFe2As2. Starting in the CT regime at x=0.027 we investigate the additional effect of electron doping by partial replacement of Ca by La. Most remarkably, with increasing y the CT phase transition is destabilized and the system is tuned back into a tetragonal ground state at y>0.08. This effect is ascribed to a weakening of interlayer As-As bonds by electron doping. Upon further electron doping filamentary superconductivity with Tc of 41 K at y=0.2 is observed.
15 Pages including figures, PRB in press
References in corpus (21)
- Superconductivity at 38 K in the iron arsenide (Ba1-xKx)Fe2As2
- Superconductivity at 43 K in Samarium-arsenide Oxides
- High-temperature superconductivity in iron-based materials
- Superconductivity at 41 K and its competition with spin-density-wave instability in layered CeOFFeAs
- The superconductivity at 18 K in LiFeAs system
- Superconductivity in iron-based F-doped layered quaternary compound Nd[O1-xFx]FeAs
- Pressure induced superconductivity in CaFeAs
- Superconductivity at 25 K in hole doped
- Pressure-induced volume-collapsed tetragonal phase of CaFe2As2 as seen via neutron scattering
- First order structural phase transition in CaFeAs
- High-Temperature Superconductivity in Eu0.5K0.5Fe2As2
- The Absence of Superconductivity in Single Phase CaFe2As2 under Hydrostatic Pressure
- Lattice collapse and quenching of magnetism in CaFe2As2 under pressure: A single crystal neutron and x-ray diffraction investigation
- Synthesis and Properties of CaFeAs Single Crystals
- Magnetic ordering and structural distortion in Ru doped BaFe2As2 single crystals studied by Neutron and X-ray diffraction
- High-Tc Superconductivity near the Anion Height Instability in Fe-based Superconductors: Analysis of LaFeAsOH
- Emergence of superconductivity at 45 K by lanthanum and phosphorus co-doping of CaFe2As2
- Dramatic Changes in the Electronic Structure Upon Transition to the Collapsed Tetragonal Phase in CaFe2As2
- Local inhomogeneity and filamentary superconductivity in Pr-doped CaFeAs
- The suppression of electron correlations in the collapsed tetragonal phase of CaFe2As2 under ambient pressure demonstrated by 75As NMR-NQR measurements
- Drastic electronic structure reconstruction of CaPrFeAs in the collapsed tetragonal phase
Cited by in corpus (3)
- The collapsed tetragonal phase as a strongly covalent and fully nonmagnetic state: persistent magnetism with interlayer As-As bond formation in Rh-doped CaSrFeAs
- Electronic Correlations and Absence of Superconductivity in the Collapsed Phase of LaFeAs
- Influence of growth flux solvent on anneal-tuning of ground states in CaFe2As2