Unlike the well-defined long-range periodic order that characterizes crystals, so far the inherent atomic packing mode in glassy solids remains mysterious. Based on molecular dynamics simulations, here we find medium-range atomic packing orders in metallic glasses, which are hidden in the diffraction data in terms of structure factors or pair correlation functions. The analysis of the hidden orders in various metallic glasses indicates that the glassy and crystalline solids share a nontrivial structural homology in short-to-medium range, and the hidden orders are formulated by inheriting partial crystalline orders during glass formation. As the number of chemical components increases, more hidden orders are often developed in a metallic gla...
Synchrotron high-energy X-ray diffraction has been used to determine the atomic structural details i...
Understanding and properly describing at.-level structure in metallic glasses and other amorphous ma...
Materials scientists lack a general, abstract description of the atomic structure of metallic glasse...
Unlike the well-defined long-range periodic order that characterizes crystals, so far the inherent a...
The hidden order of atomic packing in amorphous structures and how this may provide the origin of pl...
In this Letter, we have revealed the common structural behavior of metallic glasses through scrutini...
International audienceThe determination of the atomic configuration of metallic glasses is a long-st...
We analyze the underlying structural order that transcends liquid, glass and crystalline states in m...
The atomic structure of medium-range order in metallic glasses is investigated by using molecular dy...
Metallic glasses are metallic alloys that exhibit exotic material properties. They may have fractal ...
Data associated with the following publication: Weeks, W. Porter and Flores, Katharine M., Character...
The structural description of disordered systems has been a longstanding challenge in physical scien...
Using molecular dynamics simulations, we have studied the atomic correlations characterizing the sec...
The geometrical properties of the icosahedral ordered structure formed in liquid and glassy phases o...
This work addresses the long-standing debate over fractal models of packing structure in metallic gl...
Synchrotron high-energy X-ray diffraction has been used to determine the atomic structural details i...
Understanding and properly describing at.-level structure in metallic glasses and other amorphous ma...
Materials scientists lack a general, abstract description of the atomic structure of metallic glasse...
Unlike the well-defined long-range periodic order that characterizes crystals, so far the inherent a...
The hidden order of atomic packing in amorphous structures and how this may provide the origin of pl...
In this Letter, we have revealed the common structural behavior of metallic glasses through scrutini...
International audienceThe determination of the atomic configuration of metallic glasses is a long-st...
We analyze the underlying structural order that transcends liquid, glass and crystalline states in m...
The atomic structure of medium-range order in metallic glasses is investigated by using molecular dy...
Metallic glasses are metallic alloys that exhibit exotic material properties. They may have fractal ...
Data associated with the following publication: Weeks, W. Porter and Flores, Katharine M., Character...
The structural description of disordered systems has been a longstanding challenge in physical scien...
Using molecular dynamics simulations, we have studied the atomic correlations characterizing the sec...
The geometrical properties of the icosahedral ordered structure formed in liquid and glassy phases o...
This work addresses the long-standing debate over fractal models of packing structure in metallic gl...
Synchrotron high-energy X-ray diffraction has been used to determine the atomic structural details i...
Understanding and properly describing at.-level structure in metallic glasses and other amorphous ma...
Materials scientists lack a general, abstract description of the atomic structure of metallic glasse...