Anisotropic field response of specific heat for a ferromagnetic superconductor UCoGe in magnetic fields
arXiv:2207.07266 · doi:10.1103/PhysRevB.106.035152
Abstract
Magnetic-field-angle-resolved specific heat and magnetization measurements were conducted on a ferromagnetic superconductor UCoGe with remarkable anisotropic upper critical field . Although reaches a high magnetic field (~T) along the axis, it is small (~T) when a magnetic field is applied along the magnetic easy -axis. This study indicates that the specific heat is abruptly suppressed when the magnetic field is applied toward the axis from the and axes in the ferromagnetic state. The field response of density of states (DOS) is anisotropic, relative to the axis, and its angle dependence is slightly singular. The Ising-type magnetic anisotropy of the ferromagnetic state is dominant even in the anisotropic reinforced superconducting state. These facts indicate that the suppression of DOS may closely relate to the superconducting state. We theoretically analyze these findings together with URhGe and UTe by highlighting the common and distinctive features among three compounds.
This paper is accepted in Phys. Rev. B
References in corpus (8)
- Superconductivity on the border of weak itinerant ferromagnetism in UCoGe
- Unconventional Superconductivity in Heavy Fermion UTe2
- Review of U-based Ferromagnetic Superconductors: Comparison between UGe2, URhGe, and UCoGe
- Metamagnetic Transition in Heavy Fermion Superconductor UTe2
- Field Re-entrant Superconductivity Induced by the Enhancement of Effective Mass in URhGe
- Non-unitary triplet superconductivity tuned by field-controlled magnetization --URhGe, UCoGe and UTe--
- Wing structure in the phase diagram of the Ising Ferromagnet URhGe close to its tricritical point investigated by angle-resolved magnetization measurements
- Pairing interaction in superconducting UCoGe tunable by magnetic field