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Analytical and numerical modeling of chiral Majorana fermions in quantum anomalous Hall insulator-superconductor heterostructures, specifically focusing on the effects of non-zero chemical potential shifts on edge mode stability.
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This project is a classic academic 'code-behind-the-paper' repository. With 0 stars and 2 forks (likely the authors), it lacks any meaningful community adoption or software infrastructure. Its value lies entirely in the domain expertise of the underlying physics paper rather than the code itself. While topological quantum computing is a high-stakes field pursued by giants like Microsoft and IBM, this specific implementation is a niche theoretical tool for modeling a specific sub-phenomenon (chirality breaking). It is defensible only in the sense that the physics is complex, but it offers no moat against other researchers reimplementing the math based on the published paper. Platform risk is low because frontier AI labs are not currently targeting condensed matter physics simulators, and the 'market' for this code is limited to a few hundred specialized researchers worldwide. It is a prototype/reference implementation with no clear path to becoming a standard library like QuTiP.
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