Abstract. We examine the molecular dynamics of crystal growth in the presence of surface melting and surface impurities, and from this propose a detailed microscopic model for the growth of ice from the vapor phase. Our model naturally accounts for many aspects of the experimental data that are otherwise difficult to explain, and it suggests a variety of measurements that can provide further confirmation. Although additional work is needed to refine these ideas, we believe that the combined influences of surface melting and impurities provide a viable solution to the 60-year-old mystery of why snow crystal morphologies vary so dramatically with temperature.
We present new measurements of the growth rates of faceted ice crystals in the temperature range -40...
Single ice crystals have been grown in air at various constant pressures at -30℃ and various constan...
The morphologies and growth rates of ice crystals have been observed and documented using a novel ex...
We examine the physical mechanisms governing the formation of snow crystals, treating this problem a...
With climate modeling predicting a raise of at least 2°C by year 2100, the fate of ice has become a ...
Abstract. We describe measurements of the growth rates of the basal and prism facets of ice crystals...
We present measurements of the growth rates of the principal facet surfaces of ice from water vapor...
With climate modeling predicting a raise of at least 2°C by year 2100, the fate of ice has become a ...
We describe a comprehensive model for the formation and morphological development of atmospheric ice...
With climate modeling predicting a raise of at least 2°C by year 2100, the fate of ice has become a ...
We examine ice crystallization from liquid water and from water vapor, focusing on the underlying ph...
Abstract. We present a new microscopic model of growth and sublimation (g/s) of ice crystals in the ...
I describe a semi-empirical molecular model of the surface attachment kinetics governing ice crystal...
We examine ice crystal growth from water vapor at temperatures near the melting point, when surface ...
Abstract. We propose a new type of morphological instability in the diffusion-limited growth of face...
We present new measurements of the growth rates of faceted ice crystals in the temperature range -40...
Single ice crystals have been grown in air at various constant pressures at -30℃ and various constan...
The morphologies and growth rates of ice crystals have been observed and documented using a novel ex...
We examine the physical mechanisms governing the formation of snow crystals, treating this problem a...
With climate modeling predicting a raise of at least 2°C by year 2100, the fate of ice has become a ...
Abstract. We describe measurements of the growth rates of the basal and prism facets of ice crystals...
We present measurements of the growth rates of the principal facet surfaces of ice from water vapor...
With climate modeling predicting a raise of at least 2°C by year 2100, the fate of ice has become a ...
We describe a comprehensive model for the formation and morphological development of atmospheric ice...
With climate modeling predicting a raise of at least 2°C by year 2100, the fate of ice has become a ...
We examine ice crystallization from liquid water and from water vapor, focusing on the underlying ph...
Abstract. We present a new microscopic model of growth and sublimation (g/s) of ice crystals in the ...
I describe a semi-empirical molecular model of the surface attachment kinetics governing ice crystal...
We examine ice crystal growth from water vapor at temperatures near the melting point, when surface ...
Abstract. We propose a new type of morphological instability in the diffusion-limited growth of face...
We present new measurements of the growth rates of faceted ice crystals in the temperature range -40...
Single ice crystals have been grown in air at various constant pressures at -30℃ and various constan...
The morphologies and growth rates of ice crystals have been observed and documented using a novel ex...