Charge Density Wave Instability and Soft Phonon in PtP (=Ca, Sr, and La)
arXiv:1206.4147 · doi:10.1103/PhysRevB.86.125116
Abstract
The electronic and phonon properties of the platinum pnictide superconductors PtP (=Ca, Sr, and La) were studied using first-principles calculations. The spin-orbit coupling effect is significant in LaPtP but negligible in CaPtP and SrPtP, although they all share the same anti-pevroskite structure. Moreover, SrPtP has been demonstrated to exhibit an unexpected weak charge-density-wave(CDW) instability which is neither simply related to the Fermi-surface nesting nor to the momentum-dependent electron-phonon coupling alone. The instability is absent in CaPtP and can be quickly suppressed by the external pressure, accompanied with gradual decreases in the phonon softening and BCS . Our results suggest SrPtP as a rare example where superconductivity is enhanced by the CDW fluctuations.
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