Ultrafast Metamorphosis of a Complex Charge-Density Wave
Modulated phases, commensurate or incommensurate with the host crystal lattice, are ubiquitous in solids. The transition between such phases involves formation and rearrangement of domain walls and is generally slow. Using ultrafast electron diffraction, we directly record the photoinduced transform...
Ausführliche Beschreibung
Autor*in: |
Haupt, Kerstin [verfasserIn] |
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Englisch |
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2016 |
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Enthalten in: Physical review letters - Ridge, NY : American Physical Society, 1958, 116(2016), 1 |
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volume:116 ; year:2016 ; number:1 |
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520 | |a Modulated phases, commensurate or incommensurate with the host crystal lattice, are ubiquitous in solids. The transition between such phases involves formation and rearrangement of domain walls and is generally slow. Using ultrafast electron diffraction, we directly record the photoinduced transformation between a nearly commensurate and an incommensurate charge-density-wave phase in 1T-TaS_{2}. The transformation takes place on the picosecond time scale, orders of magnitude faster than previously observed for commensurate-to-incommensurate transitions. The transition speed and mechanism can be linked to the peculiar nanoscale structure of the photoexcited nearly commensurate phase. | ||
700 | 1 | |a Eichberger, Maximilian |4 oth | |
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Ultrafast Metamorphosis of a Complex Charge-Density Wave |
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Modulated phases, commensurate or incommensurate with the host crystal lattice, are ubiquitous in solids. The transition between such phases involves formation and rearrangement of domain walls and is generally slow. Using ultrafast electron diffraction, we directly record the photoinduced transformation between a nearly commensurate and an incommensurate charge-density-wave phase in 1T-TaS_{2}. The transformation takes place on the picosecond time scale, orders of magnitude faster than previously observed for commensurate-to-incommensurate transitions. The transition speed and mechanism can be linked to the peculiar nanoscale structure of the photoexcited nearly commensurate phase. |
abstractGer |
Modulated phases, commensurate or incommensurate with the host crystal lattice, are ubiquitous in solids. The transition between such phases involves formation and rearrangement of domain walls and is generally slow. Using ultrafast electron diffraction, we directly record the photoinduced transformation between a nearly commensurate and an incommensurate charge-density-wave phase in 1T-TaS_{2}. The transformation takes place on the picosecond time scale, orders of magnitude faster than previously observed for commensurate-to-incommensurate transitions. The transition speed and mechanism can be linked to the peculiar nanoscale structure of the photoexcited nearly commensurate phase. |
abstract_unstemmed |
Modulated phases, commensurate or incommensurate with the host crystal lattice, are ubiquitous in solids. The transition between such phases involves formation and rearrangement of domain walls and is generally slow. Using ultrafast electron diffraction, we directly record the photoinduced transformation between a nearly commensurate and an incommensurate charge-density-wave phase in 1T-TaS_{2}. The transformation takes place on the picosecond time scale, orders of magnitude faster than previously observed for commensurate-to-incommensurate transitions. The transition speed and mechanism can be linked to the peculiar nanoscale structure of the photoexcited nearly commensurate phase. |
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container_issue |
1 |
title_short |
Ultrafast Metamorphosis of a Complex Charge-Density Wave |
url |
http://www.ncbi.nlm.nih.gov/pubmed/26799033 |
remote_bool |
false |
author2 |
Eichberger, Maximilian Erasmus, Nicolas Rohwer, Andrea Demsar, Jure Rossnagel, Kai Schwoerer, Heinrich |
author2Str |
Eichberger, Maximilian Erasmus, Nicolas Rohwer, Andrea Demsar, Jure Rossnagel, Kai Schwoerer, Heinrich |
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up_date |
2024-07-03T15:24:30.793Z |
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