© 2019, The Author(s).Although some methods to improve phase-change memory efficiency have been proposed, an effective experimental approach to induce a phase-change like process without external heat energy has not yet been reported. Herein we have shown that GeTe is a prototype phase-change material, which can exhibit a non-thermal phase-change-like process under uniaxial stress. Due to its structural characteristics like directional structural instability and resonance bonding under 1% uniaxial stress, we observed that bond switching in the GeTe film between short and long bonds is possible. Due to this phase change, GeTe displays the same phase-change as crystal layer rotation. Crystal layer rotation has not been observed in the convent...
editorial reviewedDoping Chalcogenide Phase Change Materials, such as Ge2Sb2Te5 and GeTe used in non...
We investigated changes in the crystal structure of GeTe during its phase transition. Using density ...
Ge<sub>2</sub>Sb<sub>2</sub>Te<sub>5</sub> and related phase change materials are highly unusual in ...
Phase-change materials (PCM) such as GeTe and Ge-Sb-Te alloys are potential candidates for non-volat...
Phase-change materials (PCM) such as GeTe and Ge-Sb-Te alloys are potential candidates for non-volat...
Phase-change materials (PCM) such as GeTe and Ge-Sb-Te alloys are potential candidates for non-volat...
Ge2Sb2Te5 and related phase change materials are highly unusual in that they can be readily transfor...
peer reviewedDoping chalcogenide phase change materials was shown to improve the stability of the am...
Herein, we study the crystallization of undoped and nitrogen doped amorphous GeTe thin films (slight...
Aging phenomena are common to all amorphous structures, but of special importance in phase change ma...
Data recording with Phase Change Materials is a much studied topic as the writing/erasing characteri...
GeTe is a material of intense topical interest due to its potential in the context of phase-change a...
Aging phenomena are common to all amorphous structures, but of special importance in phase change ma...
In traditional materials science, structural disorder tends to break the symmetry of the lattice. In...
GeTe is a material of intense topical interest due to its potential in the context of phase-change a...
editorial reviewedDoping Chalcogenide Phase Change Materials, such as Ge2Sb2Te5 and GeTe used in non...
We investigated changes in the crystal structure of GeTe during its phase transition. Using density ...
Ge<sub>2</sub>Sb<sub>2</sub>Te<sub>5</sub> and related phase change materials are highly unusual in ...
Phase-change materials (PCM) such as GeTe and Ge-Sb-Te alloys are potential candidates for non-volat...
Phase-change materials (PCM) such as GeTe and Ge-Sb-Te alloys are potential candidates for non-volat...
Phase-change materials (PCM) such as GeTe and Ge-Sb-Te alloys are potential candidates for non-volat...
Ge2Sb2Te5 and related phase change materials are highly unusual in that they can be readily transfor...
peer reviewedDoping chalcogenide phase change materials was shown to improve the stability of the am...
Herein, we study the crystallization of undoped and nitrogen doped amorphous GeTe thin films (slight...
Aging phenomena are common to all amorphous structures, but of special importance in phase change ma...
Data recording with Phase Change Materials is a much studied topic as the writing/erasing characteri...
GeTe is a material of intense topical interest due to its potential in the context of phase-change a...
Aging phenomena are common to all amorphous structures, but of special importance in phase change ma...
In traditional materials science, structural disorder tends to break the symmetry of the lattice. In...
GeTe is a material of intense topical interest due to its potential in the context of phase-change a...
editorial reviewedDoping Chalcogenide Phase Change Materials, such as Ge2Sb2Te5 and GeTe used in non...
We investigated changes in the crystal structure of GeTe during its phase transition. Using density ...
Ge<sub>2</sub>Sb<sub>2</sub>Te<sub>5</sub> and related phase change materials are highly unusual in ...