Magnetic Pitch as a Tuning Fork for Superconductivity
arXiv:1511.09152 · doi:10.1038/ncomms13037
Abstract
Magnetism and superconductivity often compete for preeminence as a material's ground state, and in the right circumstances the fluctuating remains of magnetic order can induce superconducting pairing. The intertwining of the two on the microscopic level, independent of lattice excitations, is especially pronounced in heavy fermion compounds, rare earth cuprates, and iron pnictides. Here we point out that for a helical arrangement of localized spins, a variable magnetic pitch length provides a unique tuning process from ferromagnetic to antiferromagnetic ground state in the long and short wavelength limits, respectively. Such chemical or pressure adjustable helical order naturally provides the possibility for continuous tuning between ferromagnetically and antiferromagnetically mediated superconductivity. At the same time, phonon mediated superconductivity is suppressed because of the local ferromagnetic spin configuration. We employ synchrotron-based magnetic x-ray diffraction techniques to test these ideas in the recently discovered superconductor, MnP. This sensitive probe directly reveals a reduced-moment, helical spin order at high pressure proximate to the superconducting state, with a tightened pitch in comparison to that at ambient pressure where superconductivity is absent. The correlation between magnetic pitch length and superconducting transition temperature in the (Cr/Mn/Fe)(P/As) family suggests a strategy for using spiral magnets as interlocutors for spin fluctuation mediated superconductivity.
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- Growth of bulk single-crystal MnP helimagnet and its structural and NMR characterization
- Approaching the quantum critical point in a highly-correlated all-in-all-out antiferromagnet
- Magnetic states of MnP: muon-spin rotation studies
- Strongly-coupled quantum critical point in an all-in-all-out antiferromagnet
- First-principles calculations of the magnetic and electronic structures of MnP under pressure
- Helimagnetic Structure and Heavy-Fermion-Like Behavior in the Vicinity of the Quantum Critical Point in MnP
- Influence of static correlation on the magnon dynamics of an itinerant ferromagnet with competing exchange interactions -- a first principles study of MnBi
- Orbital-dependent charge dynamics in MnP revealed by optical study
- Helical magnetic state in the vicinity of the pressure-induced superconducting phase in MnP
- Lattice dynamics in the double-helix antiferromagnet FeP
- Incommensurate magnetic order in rare earth and transition metal compounds with local moments
- Double-helix magnetic order in CrAs with Pnma space group
- Dimensionality of the superconductivity in the transition metal pnictide WP
- From strong to weak correlations in breathing-mode kagome van der Waals materials: Nb(F,Cl,Br,I) as a robust and versatile platform for many-body engineering