Jake Dudley Mehew
;
Rafael Luque Merino
;
Hiroaki Ishizuka
;
Alexander Block
;
Jaime Díez Mérida
;
Andrés Díez Carlón
;
Kenji Watanabe
(National Institute for Materials Science
)
;
Takashi Taniguchi
(National Institute for Materials Science
)
;
Leonid S. Levitov
;
Dmitri K. Efetov
;
Klaas-Jan Tielrooij
説明:
(abstract)Scattering between particles represents a crucial class of microscopic physical processes that govern transport properties and excited-state relaxation phenomena, among others. In crystals, as well as normal scattering, the discrete translation symmetry allows Umklapp scatter- ing events that do not conserve momentum. Phonon-phonon Umklapp scattering is a ubiquitous process that governs the thermal conductiv- ity of semiconductors and insulators, while electron-electron Umklapp scattering is only observed in ultraclean systems, usually at low temper- atures. In contrast, Umklapp scattering between electrons and phonons has not been demonstrated experimentally. Here we reveal the occurrence of electron-phonon Umklapp scattering in twisted bilayer graphene near the magic angle using time- and frequency-resolved photocurrent mea- surements. In magic-angle twisted bilayer graphene, a dramatic speedup of hot carrier cooling occurs: the cooling time is a few picoseconds from room temperature down to 5 K, where in pristine graphene coupling to acoustic phonons takes nanoseconds. Our theoretical calculations show that this ultrafast cooling is the result of the formation of a super- lattice with low-energy moir ́e phonons, spatially compressed electronic Wannier orbitals, and a reduced superlattice Brillouin zone, enabling Umklapp scattering and thus overcoming electron-phonon momentum mismatch. These results demonstrate the ability to engineer electron- phonon coupling in twistronic systems, and could contribute to the fundamental understanding of their transport properties, while enabling applications in thermal management and ultrafast photodetection.
権利情報:
キーワード: Electron-phonon interactions, twisted bilayer graphene, hot-electron cooling
刊行年月日: 2024-02-09
出版者: American Association for the Advancement of Science (AAAS)
掲載誌:
研究助成金:
原稿種別: 出版者版 (Version of record)
MDR DOI:
公開URL: https://doi.org/10.1126/sciadv.adj1361
関連資料:
その他の識別子:
連絡先:
更新時刻: 2025-02-23 22:46:44 +0900
MDRでの公開時刻: 2025-02-23 22:46:44 +0900
| ファイル名 | サイズ | |||
|---|---|---|---|---|
| ファイル名 |
sciadv.adj1361.pdf
(サムネイル)
application/pdf |
サイズ | 1.36MB | 詳細 |