Origin of ultrastability in vapor-deposited glasses
arXiv:1706.02738 · doi:10.1103/PhysRevLett.119.188002
Abstract
Glass films created by vapor-depositing molecules onto a substrate can exhibit properties similar to those of ordinary glasses aged for thousands of years. It is believed that enhanced surface mobility is the mechanism that allows vapor deposition to create such exceptional glasses, but it is unclear how this effect is related to the final state of the film. Here we use molecular dynamics simulations to model vapor deposition and an efficient Monte Carlo algorithm to determine the deposition rate needed to create ultra-stable glassy films. We obtain a scaling relation that quantitatively captures the efficiency gain of vapor deposition over bulk annealing, and demonstrates that surface relaxation plays the same role in the formation of vapor-deposited glasses as bulk relaxation does in ordinary glass formation.
Five pages and five figures. Data relevant to this work have been archived and can be accessed at https://doi.org/10.7924/G8P26W5G
References in corpus (2)
Cited by in corpus (20)
- Perspective: Highly stable vapor-deposited glasses
- Modern computational studies of the glass transition
- Density controls the kinetic stability of ultrastable glasses
- Mechanisms of bulk and surface diffusion in metallic glasses determined from molecular dynamics simulations
- Low-temperature anomalies of a vapor deposited glass
- Enhanced Medium Range Order in Vapor Deposited Germania Glasses at Elevated Temperatures
- Using Deposition Rate and Substrate Temperature to Manipulate Liquid Crystal-like Order in a Vapor-deposited Hexagonal Columnar Glass
- Vapor deposition rate modifies anisotropic glassy structure of an anthracene-based organic semiconductor
- Temperature effects on the structure and mechanical properties of vapor deposited a-SiO2
- Computer simulations of the glass transition and glassy materials
- Structural signatures of ultrastability in a deposited glassformer
- Surface Equilibration Mechanism Controls the Stability of a Model Co-deposited Glass Mixture of Organic Semiconductors
- Factors correlating to enhanced surface diffusion in metallic glasses
- On the Allowable or Forbidden Nature of Vapor-Deposited Glasses
- Structural tunability and origin of two-level systems in amorphous silicon
- Surface and Bulk Relaxation of Vapour-Deposited Polystyrene Glasses
- Characterising the slow dynamics of the swap Monte Carlo algorithm
- High density two-component glasses of organic semiconductors prepared by physical vapor deposition
- Computational Methods toward Ultrastable Glasses
- Initial Stages of Rejuvenation of Vapor-Deposited Glasses during Isothermal Annealing: Contrast Between Experiment and Simulation