Orbital-dependent charge dynamics in MnP revealed by optical study
Abstract
Unconventional superconductivity often emerges at the border of long-range magnetic orders. Understanding the low-energy charge dynamics may provide crucial information on the formation of superconductivity. Here we report the unpolarized/polarized optical conductivity study of high quality MnP single crystals at ambient pressure. Our data reveal two types of charge carriers with very different lifetimes. In combination with the first-principles calculations, we show that the short-lifetime carriers have flat Fermi sheets which become gapped in the helimagnetic phase, causing a dramatic change in the low-frequency optical spectra, while the long-lifetime carriers are anisotropic three-dimensional like which are little affected by the magnetic transitions and provide major contributions to the transport properties. This orbital-dependent charge dynamics originates from the special crystal structure of MnP and may have an influence on the unconventional superconductivity and its interplay with helimagnetism at high pressures.
Cite
@article{arxiv.1607.02853,
title = {Orbital-dependent charge dynamics in MnP revealed by optical study},
author = {P. Zheng and Y. J. Xu and W. Wu and G. Xu and J. L. Lv and F. K. Lin and P. Wang and Yi-feng Yang and J. L. Luo},
journal= {arXiv preprint arXiv:1607.02853},
year = {2017}
}
Comments
10 pages, 7 figures