Flash melting amorphous ice

Author:

Mowry Nathan J.1ORCID,Krüger Constantin R.1ORCID,Bongiovanni Gabriele1ORCID,Drabbels Marcel1ORCID,Lorenz Ulrich J.1ORCID

Affiliation:

1. Ecole Polytechnique Fédérale de Lausanne (EPFL), Laboratory of Molecular Nanodynamics , CH-1015 Lausanne, Switzerland

Abstract

Water can be vitrified if it is cooled at high rates, which makes it possible to outrun crystallization in so-called no man’s land, a range of deeply supercooled temperatures where water crystallizes rapidly. Here, we study the reverse process in pure water samples by flash melting amorphous ice with microsecond laser pulses. Time-resolved electron diffraction reveals that the sample transiently crystallizes despite a heating rate of more than 5 × 106 K/s, even though under the same conditions, vitrification can be achieved with a similar cooling rate of 107 K/s. Moreover, we observe different crystallization kinetics for amorphous solid water and hyperquenched glassy water. These experiments open up new avenues for elucidating the crystallization mechanism of water and studying its dynamics in no man’s land. They also add important insights into the laser melting and revitrification processes that are integral to the emerging field of microsecond time-resolved cryo-electron microscopy.

Funder

HORIZON EUROPE European Research Council

Swiss National Science Foundation

Publisher

AIP Publishing

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1. Microsecond time-resolved cryo-electron microscopy;Current Opinion in Structural Biology;2024-08

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