Path-integral simulations of supercooled water exhibit smoother pressure-dependent density and reduced tetrahedral order compared to classical runs, indicating nuclear quantum effects modify both low- and high-density liquid structures.
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Importance of nuclear quantum effects on the structure of supercooled water around its liquid--liquid critical point
Path-integral simulations of supercooled water exhibit smoother pressure-dependent density and reduced tetrahedral order compared to classical runs, indicating nuclear quantum effects modify both low- and high-density liquid structures.