Data sharing helps avoid "smoking gun" claims of topological milestones.

Frolov, S M; Zhang, P; Zhang, B; Jiang, Y; Byard, S; Mudi, S R; Chen, J; Chen, A-H et al. · Science · 2026

basic_science · Level V

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Abstract

Manipulating the topology of electronic bands can realize new states of matter, with possible implications for information technology. A central question is how to tell whether a topological regime has been achieved. Experiments are often guided by a prediction of a distinct and self-explanatory signal called "the smoking gun." However, in micrometer- or nanometer-scale specimens, phenomenology can mimic the anticipated behavior without containing the exotic states. We show limited data that are consistent with the presence of four topological phenomena; by considering additional data, we identified the most likely origins of the observed patterns as trivial. We argue that the reliability of smoking gun-type claims can be greatly enhanced by releasing comprehensive datasets, discussing alternative scenarios, and disclosing the total volume of study.