Observation of a Chiral Wave Function in Twofold Degenerate Quadruple Weyl System BaPtGe
Abstract
Topological states in quantum materials are defined by non-trivial topological invariants, such as the Chern number, which are properties of their bulk wave functions. A remarkable consequence of topological wave functions is the emergence of edge modes, a phenomenon known as bulk-edge correspondence, that gives rise to quantized or chiral physical properties. While edge modes are widely presented as signatures of non-trivial topology, how bulk wave functions can manifest explicitly topological properties remains unresolved. Here, using high-resolution inelastic x-ray spectroscopy (IXS) combined with first principles calculations, we report experimental signatures of chiral wave functions in the bulk phonon spectrum of BaPtGe, which we show to host a previously undiscovered twofold degenerate quadruple Weyl node. The chirality of the degenerate phononic wave function yields a non-trivial phonon dynamical structure factor, S(Q,), along high-symmetry directions, that is in excellent agreement with numerical and model calculations. Our results establish IXS as a powerful tool to uncover topological wave functions, providing a key missing ingredient in the study of topological quantum matter.
Keywords
Cite
@article{arxiv.2010.00764,
title = {Observation of a Chiral Wave Function in Twofold Degenerate Quadruple Weyl System BaPtGe},
author = {Haoxiang Li and Tiantian Zhang and A. Said and Y. Fu and G. Fabbris and D. G. Mazzone and J. Zhang and J. Lapano and H. N. Lee and H. C. Lei and M. P. M. Dean and S. Murakami and H. Miao},
journal= {arXiv preprint arXiv:2010.00764},
year = {2021}
}
Comments
Data and movies that support the findings of this study are available from the corresponding author on reasonable request