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Numerical simulation of quench dynamics and Lee-Yang-Fisher zeros in a Z3 symmetric chiral clock model to identify dynamical quantum phase transitions (DQPT).
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This project is a specialized reference implementation for a specific theoretical physics paper (arXiv:2411.03953). With 0 stars and 4 forks, it represents a niche academic tool rather than a software product. The defensibility is low because the 'moat' resides in the theoretical discovery documented in the paper, not the code itself, which likely uses standard exact diagonalization techniques that are easily reproducible by any graduate-level researcher in the field. Frontier labs have zero interest in the quench dynamics of Z3 chiral clock models, as this is purely fundamental condensed matter research. The primary risk is academic obsolescence where newer, more efficient simulation methods (like Tensor Networks or DMRG variants) or broader studies supersede these specific findings. There is no commercial market or platform risk associated with this work.
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