Momentum-Resolved Fingerprint of Mottness in Layer-Dimerized Nb$_3$Br$_8$
Abstract
In a well-ordered crystalline solid, insulating behaviour can arise from two mechanisms: electrons can either scatter off a periodic potential, thus forming band gaps that can lead to a band insulator, or they localize due to strong interactions, resulting in a Mott insulator. For an even number of electrons per unit cell, either band- or Mott-insulators can theoretically occur. However, unambiguously identifying an unconventional Mott-insulator with an even number of electrons experimentally has remained a longstanding challenge due to the lack of a momentum-resolved fingerprint. This challenge has recently become pressing for the layer dimerized van der Waals compound NbBr, which exhibits a puzzling magnetic field-free diode effect when used as a weak link in Josephson junctions, but has previously been considered to be a band-insulator. In this work, we present a unique momentum-resolved signature of a Mott-insulating phase in the spectral function of NbBr: the top of the highest occupied band along the out-of-plane dimerization direction has a momentum space separation of , whereas the valence band maximum of a band insulator would be separated by less than , where is the average spacing between the layers. As the strong electron correlations inherent in Mott insulators can lead to unconventional superconductivity, identifying NbBr as an unconventional Mott-insulator is crucial for understanding its apparent time-reversal symmetry breaking Josephson diode effect. Moreover, the momentum-resolved signature employed here could be used to detect quantum phase transition between band- and Mott-insulating phases in van der Waals heterostructures, where interlayer interactions and correlations can be easily tuned to drive such transition.
Keywords
Cite
@article{arxiv.2410.16199,
title = {Momentum-Resolved Fingerprint of Mottness in Layer-Dimerized Nb$_3$Br$_8$},
author = {Mihir Date and Francesco Petocchi and Yun Yen and Jonas A. Krieger and Banabir Pal and Vicky Hasse and Emily C. McFarlane and Chris Körner and Jiho Yoon and Matthew D. Watson and Vladimir N. Strocov and Yuanfeng Xu and Ilya Kostanovski and Mazhar N. Ali and Sailong Ju and Nicholas C. Plumb and Michael A. Sentef and Georg Woltersdorf and Michael Schüler and Philipp Werner and Claudia Felser and Stuart S. P. Parkin and Niels B. M. Schröter},
journal= {arXiv preprint arXiv:2410.16199},
year = {2025}
}
Comments
9 pages, 3 figures