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Related papers: Regelation: why does ice melt under pressure?

200 papers

Water is ubiquitously important but least known. This perspective features the latest finding of two exotic forms of water called quasisolid and supersolid phases due to the cooperativity and disparity of the O:H-O bond in its segmental…

Materials Science · Physics 2024-04-03 CQ Sun

In this paper we study the process termed thermal regelation at single particle level. We experimentally extract the physical parameters that determine the interactions between ice and the silica particle for the regelation process. As the…

Soft Condensed Matter · Physics 2020-07-13 Siyu Chen , Julia M. H. Schollick , Roel P. A. Dullens , Dirk G. A. L. Aarts

A disordered quasi-liquid layer of water is thought to cover the ice surface, but many issues, such as its onset temperature, its thickness, or its actual relation to bulk liquid water have been a matter of unsettled controversy for more…

Soft Condensed Matter · Physics 2026-01-22 Luis G. MacDowell

We report results of MD simulations of amorphous ice in the pressure range 0 - 22.5 kbar. The high-density amorphous ice (HDA) prepared by compression of Ih ice at T = 80 K is annealed to T = 170 K at intermediate pressures in order to…

Materials Science · Physics 2009-11-10 R. Martonak , D. Donadio , M. Parrinello

We show that programmable heating and salting share the same effect on the frequency shift of the O:H and the H-O stretching phonons of the O:H-O hydrogen bond, which revealed that both heating and salting lengthens and softens the O:H bond…

Soft Condensed Matter · Physics 2013-10-04 Xi Zhang , Yongli Huang , Zengsheng Ma , Yichun Zhou , Chang Q Sun

Methane ebullition (bubbling) from lake sediments is an important methane flux into the atmosphere. Previous studies have focused on the open-water season, showing that temperature variations, pressure fluctuations and wind-induced currents…

Atmospheric and Oceanic Physics · Physics 2021-05-14 K. Zhao , E. W. Tedford , M. Zare , G. A. Lawrence

Neutron scattering, a.c. magnetic susceptibility and specific heat studies have been carried out on polycrystalline Dy2Zr2O7. Unlike the pyrochlore spin ice Dy2Ti2O7, Dy2Zr2O7 crystallizes into the fluorite structure and the magnetic Dy3+…

Disordered Systems and Neural Networks · Physics 2019-07-01 J. G. A. Ramon , C. W. Wang , L. Ishida , P. L. Bernardo , M. M. Leite , F. M. Vichi , J. S. Gardner , R. S. Freitas

Hydrogels are particularly versatile materials that are widely found in both Nature and industry. One key reason for this versatility is their high water content, which lets them dramatically change their volume and many of their mechanical…

Soft Condensed Matter · Physics 2024-07-19 Yanxia Feng , Dominic Gerber , Stefanie Heyden , Martin Kröger , Eric R. Dufresne , Lucio Isa , Robert W. Style

The relaxation of polymers around and below their glass transition temperature is governed by a range of correlated unit processes with a wide range of timescales. The fast deformation rates of shock loading can negate a significant…

Materials Science · Physics 2022-07-27 Jalen Macatangay , Brenden W. Hamilton , Alejandro Strachan

Condensation and frost formation degrade the heat transfer performance of air-conditioners and refrigerators. Yet, the frost formation mechanism has not been fully understood. In the present study, we numerically investigated H2O droplets…

Mesoscale and Nanoscale Physics · Physics 2021-04-27 Yoshitaka Ueki , Yuta Tsutsumi , Masahiko Shibahara

Re-entrant melting (in which a substance's melting point starts to decrease beyond a certain pressure) is believed to be an unusual phenomenon. Among the elements, it has so far only been observed in a very limited number of species, e.g.,…

Materials Science · Physics 2020-05-06 Qi-Jun Hong , Axel van de Walle

Based on its simple valence electron configuration, we may expect lithium to have straightforward physical properties that are easily explained. However, solid lithium, when cooled below 77 K, develops a complex structure that has been…

Strongly Correlated Electrons · Physics 2024-12-19 Eric He , C. M. Wilson , R. Ganesh

We study a chemical gelation model in two dimensions which includes both monomer aggregations and bond fluctuations. Our numerical simulation shows that a sol-gel transition occurs when an initial monomer concentration is above a critical…

Soft Condensed Matter · Physics 2007-05-23 Kenji Ohira , Masatoshi Sato , Mahito Kohmoto

Water and hydrogen at high pressure make up a substantial fraction of the interiors of giant planets. Using ab initio random structure search methods we investigate the ground-state crystal structures of water, hydrogen, and hydrogen-oxygen…

Materials Science · Physics 2013-02-01 Shuai Zhang , Hugh Wilson , Kevin Driver , Burkhard Militzer

In irreversible aggregation processes droplets or polymers of microscopic size successively coalesce until a large cluster of macroscopic scale forms. This gelation transition is widely believed to be self-averaging, meaning that the order…

Statistical Mechanics · Physics 2016-08-11 Y. S. Cho , M. G. Mazza , B. Kahng , J. Nagler

In the limit of infinite yield time for stresses, the hydrodynamic equations for viscoelastic, Non-Newtonian liquids such as polymer melts must reduce to that for solids. This piece of information suffices to uniquely determine the…

Soft Condensed Matter · Physics 2009-10-31 Hubert Temmen , Harald Pleiner , Mario Liu , Helmut R. Brand

The stable structures and melting properties of ion clouds in isotropic octupole traps are investigated using a combination of semi-analytical and numerical models, with a particular emphasis at finite size scaling effects. Small-size…

Atomic Physics · Physics 2015-05-14 Florent Calvo , Caroline Champenois , Ersin Yurtsever

The electrical resistivity of liquid hydrogen has been measured at the high dynamic pressures, densities and temperatures that can be achieved with a reverberating shock wave. The resulting data are most naturally interpreted in terms of a…

Materials Science · Physics 2009-10-30 W. J. Nellis , A. A. Louis , N. W. Ashcroft

All liquids in nature can be supercooled to form a glass. Surprisingly, although this phenomenon has been employed for millennia, it still remains ill-understood. Perhaps the most puzzling feature of supercooled liquids is the dramatic…

Soft Condensed Matter · Physics 2016-08-01 N. B. Weingartner , C. Pueblo , F. S. Nogueira , K. F. Kelton , Z. Nussinov

We study the phase equilibrium between liquid water and ice Ih modeled by the TIP4P/Ice interatomic potential using enhanced sampling molecular dynamics simulations. Our approach is based on the calculation of ice Ih-liquid free energy…

Statistical Mechanics · Physics 2020-06-24 Pablo M. Piaggi , Roberto Car