We show that non-equilibrium dynamics plays a central role in the photoinduced 2H-to-1T′ phase transition of MoTe2. The phase transition is initiated by a local ordering of Te vacancies, followed by a 1T′ structural change in the original 2H lattice. The local 1T′ region serves as a seed to gather more vacancies into ordering and subsequently induces a further growth of the 1T′ phase. Remarkably, this process is controlled by photogenerated excited carriers as they enhance vacancy diffusion, increase the speed of vacancy ordering, and are hence vital to the 1T′ phase transition. This mechanism can be contrasted to the current model requiring a collective sliding of a whole Te atomic layer, which is thermodynamically highly unlikely. By unco...
We report on the coherent phonon spectroscopy of polymorphic $\mathrm{MoTe_2}$ single crystals using...
Transition metal dichalcogenides exhibit phase transitions through atomic migration when triggered b...
Atomically thin layers of transition metal dichalcogenide (TMDC) semiconductors exhibit outstanding ...
The discovery and control of new phases of matter are a central endeavor in materials research. Phas...
7The technological interest in MoTe2 as a phase engineered material is related to the possibility of...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily t...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily tu...
Photoinduced phase transitions can have complex and intriguing behaviors more than material ground-s...
Abstract Atom migrations in single-layer 1H-MoTe2 are studied with Cc/Cs-corrected high-resolution ...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily tu...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily tu...
Understanding the phase transition mechanisms in two-dimensional (2D) materials is a key to precisel...
The monoclinic-phase 1T′ MoTe2 crystal exhibits inversion symmetry as an anisotropic semi-metal, dic...
The two-dimensional transition-metal dichalcogenide 1T−TaS2 is a complex material standing out for i...
MoTe2 has recently been shown to realize in its low-temperature phase the type-II Weyl semimetal (WS...
We report on the coherent phonon spectroscopy of polymorphic $\mathrm{MoTe_2}$ single crystals using...
Transition metal dichalcogenides exhibit phase transitions through atomic migration when triggered b...
Atomically thin layers of transition metal dichalcogenide (TMDC) semiconductors exhibit outstanding ...
The discovery and control of new phases of matter are a central endeavor in materials research. Phas...
7The technological interest in MoTe2 as a phase engineered material is related to the possibility of...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily t...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily tu...
Photoinduced phase transitions can have complex and intriguing behaviors more than material ground-s...
Abstract Atom migrations in single-layer 1H-MoTe2 are studied with Cc/Cs-corrected high-resolution ...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily tu...
Molybdenum ditelluride, MoTe2, is a versatile material where the topological phase can be readily tu...
Understanding the phase transition mechanisms in two-dimensional (2D) materials is a key to precisel...
The monoclinic-phase 1T′ MoTe2 crystal exhibits inversion symmetry as an anisotropic semi-metal, dic...
The two-dimensional transition-metal dichalcogenide 1T−TaS2 is a complex material standing out for i...
MoTe2 has recently been shown to realize in its low-temperature phase the type-II Weyl semimetal (WS...
We report on the coherent phonon spectroscopy of polymorphic $\mathrm{MoTe_2}$ single crystals using...
Transition metal dichalcogenides exhibit phase transitions through atomic migration when triggered b...
Atomically thin layers of transition metal dichalcogenide (TMDC) semiconductors exhibit outstanding ...