Helical magnetic state in the vicinity of the pressure-induced superconducting phase in MnP
arXiv:2308.13634 · doi:10.1103/PhysRevResearch.5.043026
Abstract
MnP is a metal that shows successive magnetic transitions from paramagnetic to ferromagnetic and helical magnetic phases at ambient pressure with decreasing temperature. With applied pressure, the magnetic transition temperatures decrease and superconductivity appears around 8 GPa where the magnetic order is fully suppressed and the quantum critical behavior is observed. These results suggest that MnP is an unconventional superconductor in which magnetic fluctuations may be relevant to the superconducting pairing mechanism. In order to elucidate the magnetic ground state adjacent to the superconducting phase first discovered in Mn-based materials, high-pressure neutron diffraction measurements have been performed in hydrostatic pressure up to 7.5 GPa. The helical magnetic structure with the propagation vector along the axis, reported previously at 3.8 GPa, was found to be robust up to 7.5 GPa. First principles and classical Monte Carlo calculations have also been performed to understand how the pressure-driven magnetic phase transitions are coupled with change of the exchange interactions. The calculations, which qualitatively reproduce the magnetic structures as a function of pressure, suggest that the exchange interactions change drastically with applied pressure and the further-neighbor interactions become more influential at high pressures. Combining the experimental and theoretical results, we describe the detail of exchange interactions in the vicinity of the superconducting phase which is critical to understand the pairing mechanism of the unconventional superconductivity in MnP.
15 pages, 10 figures
References in corpus (10)
- Magnetism and its microscopic origin in iron-based high-temperature superconductors
- TB2J: a python package for computing magnetic interaction parameters
- Superconductivity in the vicinity of antiferromagnetic order in CrAs
- Pressure induced superconductivity on the border of magnetic order in MnP
- Superconductivity of 2.2 K under Pressure in Helimagnet CrAs
- Calculation of the exchange constants of the Heisenberg model in the plane-wave based methods using the Green's function approach
- Non-collinear spin-density wave antiferromagnetism in FeAs
- Pressure-induced superconductivity up to 9 K in the quasi-one-dimensional KMn6Bi5
- Frustration model and spin excitations in the helimagnet FeP
- Magnetic correlations in the pressure-induced superconductor CrAs investigated by As nuclear magnetic resonance