Abstract
We show that an in-plane magnetic field can drive two-dimensional spin-orbit-coupled systems under the superconducting proximity effect into a gapless phase where parts of the normal state Fermi surface are gapped, and the ungapped parts are reconstructed into a small Fermi surface of Bogoliubov quasiparticles at zero energy. The charge distribution, spin texture, and density of states of such a "partial Fermi surface" are discussed. Material platforms for its physical realization are proposed.
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CITATION STYLE
Yuan, N. F. Q., & Fu, L. (2018). Zeeman-induced gapless superconductivity with a partial Fermi surface. Physical Review B, 97(11). https://doi.org/10.1103/PhysRevB.97.115139
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