The ~8 eV optical absorption peak in water and ice arises from charge-transfer excitons whose collective intensity increases with the ordering length of proton-ordered water wires, making optical absorption a potential probe of water wires.
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Optical absorption spectroscopy probes water wire and its ordering in a hydrogen-bond network
The ~8 eV optical absorption peak in water and ice arises from charge-transfer excitons whose collective intensity increases with the ordering length of proton-ordered water wires, making optical absorption a potential probe of water wires.