arXiv · 2212.06930
Tuning the parity of superconductivity in CeRh2As2 via pressure
Abstract
In the recently discovered heavy fermion superconductor CeRh2As2, a magnetic field induced phase transition has been observed inside the superconducting state, which is proposed to be a transition from an even to an odd-parity superconducting state. The odd-parity superconducting state and its large upper critical field has been explained by local inversion symmetry breaking and consequent Rashba spin-orbit coupling. Here we report the experimental tuning of the parity of superconductivity in CeRh2As2 via applied pressure. Superconductivity is enhanced by pressure after its initial suppression, forming a second dome. However, the odd-parity state only exists in the first dome and the second dome is dominated by the even-parity state. This parity switch of superconductivity under pressure is consistent with the competition between Rashba spin-orbit coupling and interlayer hopping in determining the parity of superconductivity in systems with local inversion symmetry breaking. Our results provide insightful guidance on how to look for new odd-parity superconductors.
Explore related subjects
Keep this discovery
Hasan Siddiquee, Zackary Rehfuss, Christopher Broyles, Sheng Ran. 2022-12-13. Tuning the parity of superconductivity in CeRh2As2 via pressure. https://doi.org/10.1103/physrevb.108.l020504
Cite the original work for its findings. Save a collection to share your selection of sources.