Path integral simulations from 300 K to 1.67 K show that oxygen quantum delocalization can match or exceed proton delocalization in finite water clusters at ultra-low temperatures, while the effect is absent in ice.
Chakrabarty , author M
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Quantum Nature of the Hydrogen Bond from Ambient Conditions down to Ultra-low Temperatures
Path integral simulations from 300 K to 1.67 K show that oxygen quantum delocalization can match or exceed proton delocalization in finite water clusters at ultra-low temperatures, while the effect is absent in ice.