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Topological invariant for finite systems in the presence of disorder

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arxiv 2508.13146 v1 pith:G5TWKWBQ submitted 2025-08-18 cond-mat.mes-hall

Topological invariant for finite systems in the presence of disorder

classification cond-mat.mes-hall
keywords topologicalindicatorsfinite-sizedefineddisorderdisorderedfinitehybrid
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Topological invariants, rigorously defined only in the thermodynamic limit, have been generalized to topological indicators applicable to finite-size disordered systems. However, in many experimentally relevant situations, such as semiconductor-superconductor (SM-SC) hybrid nanowires hosting Majorana zero modes, the interplay between strong disorder and finite-size effects renders these indicators (e.g., the so-called topological visibility) biased and ill-defined, significantly limiting their usefulness. In this paper, we propose the topological invariant rigorously defined for an infinite system constructed by periodically repeating the original finite disordered system, as a topological indicator. Using the one-dimensional SM-SC hybrid nanowire as an example, we show that this general and transparent approach yields faithful topological indicators free from the biases affecting commonly used finite-size indicators, capturing the nature (topological or trivial) of the phase at generic points in parameter space, and providing a reliable tool for interpreting experimental results.

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  1. MEDA: Measurement-Efficient Disorder-Aware Majorana Zero Mode Detection in Realistic Devices

    cs.ET 2026-07 conditional novelty 6.0

    A machine-learning pipeline maps sparse simulated conductance data to a disorder-aware topological invariant (PDI), matching an idealized scattering-matrix oracle while using 10x fewer measurements.