Momentum-resolved fingerprint of Mottness in layer-dimerized Nb3Br8
Abstract
Abstract Crystalline solids can become band insulators due to fully filled bands, or Mott insulators due to strong electronic correlations. While Mott insulators can theoretically occur in systems with an even number of electrons per unit cell, distinguishing them from band insulators experimentally has remained a longstanding challenge. In this work, we present a unique momentum-resolved signature of a dimerized Mott-insulating phase in the experimental spectral function of Nb3Br8: the top of the highest occupied band along the out-of-plane direction kz has a momentum-space separation Δk z = 2π/d, whereas that of a band insulator is less than π/d, where d is the average interlayer spacing. Identifying Nb3Br8 as a Mott insulator is crucial to understand its role in the field-free Josephson diode effect. Moreover, our method could be extended to other van der Waals systems where tuning interlayer coupling and Coulomb interactions can drive a band- to Mott-insulating transition.
Article Details
Authors (23)
Mihir Date
Francesco Petocchi
Yun Yen
Jonas A. Krieger
Banabir Pal
Vicky Hasse
Emily C. McFarlane
Chris Körner
Jiho Yoon
Matthew D. Watson
Laboratory of Protein Conformation and Dynamics, Biochemistry and Biophysics Center, National Heart, Lung, and Blood Institute
Vladimir N. Strocov
Yuanfeng Xu
Ilya Kostanovski
Mazhar N. Ali
Sailong Ju
Nicholas C. Plumb
Michael A. Sentef
Georg Woltersdorf
Michael Schüler
Philipp Werner
Claudia Felser
Stuart S. P. Parkin
Niels B. M. Schröter