Low-temperature properties of crystalline solids can be understood using harmonic perturbations around a perfect lattice, as in Debye’s theory. Low-temperature properties of amorphous solids, however, strongly depart from such descriptions, displaying enhanced transport, activated slow dynamics across energy barriers, excess vibrational modes with respect to Debye’s theory (i.e., a boson peak), and complex irreversible responses to small mechanical deformations. These experimental observations indirectly suggest that the dynamics of amorphous solids becomes anomalous at low temperatures. Here, we present direct numerical evidence that vibrations change nature at a well-defined location deep inside the glass phase of a simple glass former. W...
By considering the low-frequency vibrational modes of amorphous solids, Manning and Liu [Phys. Rev. ...
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
The long-lived stimulated photon echo is put forward as a powerful technique to probe structural dyn...
Computational studies of supercooled liquids often focus on various analyses of their "underlying in...
We examine the structural relaxation of glassy materials at finite temperatures, considering the eff...
The formulation of a fundamental description of amorphous solids is a standing challenge in condense...
We study energy minimized configurations of amorphous solids with a simple shear degree of freedom. ...
We investigate the vibrational properties of topologically disordered materials by analytically stud...
In this thesis, we investigate the relationships between the disorder, structure, and deformation in...
Molecular dynamics simulation has been used to explore the evolution, kinetics, and dynamics of a li...
Disordered solids are all around us from glass and plastic to sand and grains. However, compared to ...
Disordered solids are all around us from glass and plastic to sand and grains. However, compared to ...
If liquids, polymers, bio-materials, metals and molten salts can avoid crystallization during coolin...
This is the publisher's version, also available electronically from http://journals.aps.org/prb/abst...
We report measurements of the temperature dependence of the sound attenuation and the fractional cha...
By considering the low-frequency vibrational modes of amorphous solids, Manning and Liu [Phys. Rev. ...
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
The long-lived stimulated photon echo is put forward as a powerful technique to probe structural dyn...
Computational studies of supercooled liquids often focus on various analyses of their "underlying in...
We examine the structural relaxation of glassy materials at finite temperatures, considering the eff...
The formulation of a fundamental description of amorphous solids is a standing challenge in condense...
We study energy minimized configurations of amorphous solids with a simple shear degree of freedom. ...
We investigate the vibrational properties of topologically disordered materials by analytically stud...
In this thesis, we investigate the relationships between the disorder, structure, and deformation in...
Molecular dynamics simulation has been used to explore the evolution, kinetics, and dynamics of a li...
Disordered solids are all around us from glass and plastic to sand and grains. However, compared to ...
Disordered solids are all around us from glass and plastic to sand and grains. However, compared to ...
If liquids, polymers, bio-materials, metals and molten salts can avoid crystallization during coolin...
This is the publisher's version, also available electronically from http://journals.aps.org/prb/abst...
We report measurements of the temperature dependence of the sound attenuation and the fractional cha...
By considering the low-frequency vibrational modes of amorphous solids, Manning and Liu [Phys. Rev. ...
Many fascinating questions still remain unsettled for condensed matter physicists who study the glas...
The long-lived stimulated photon echo is put forward as a powerful technique to probe structural dyn...