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The ultrafast onset of exciton formation in 2D semiconductors.
Trovatello, Chiara; Katsch, Florian; Borys, Nicholas J; Selig, Malte; Yao, Kaiyuan; Borrego-Varillas, Rocio; Scotognella, Francesco; Kriegel, Ilka; Yan, Aiming; Zettl, Alex; Schuck, P James; Knorr, Andreas; Cerullo, Giulio; Conte, Stefano Dal.
Afiliación
  • Trovatello C; Dipartimento di Fisica, Politecnico di Milano, Piazza L. da Vinci 32, Milano, I-20133, Italy.
  • Katsch F; Institut für Theoretische Physik, Technische Universität Berlin, 10623, Berlin, Germany.
  • Borys NJ; Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
  • Selig M; Department of Physics, Montana State University, Bozeman, MT, USA.
  • Yao K; Institut für Theoretische Physik, Technische Universität Berlin, 10623, Berlin, Germany.
  • Borrego-Varillas R; Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
  • Scotognella F; Department of Mechanical Engineering, University of California, Berkeley, CA, 94720, USA.
  • Kriegel I; Department of Mechanical Engineering, Columbia University, New York, NY, 10027, USA.
  • Yan A; Dipartimento di Fisica, Politecnico di Milano, Piazza L. da Vinci 32, Milano, I-20133, Italy.
  • Zettl A; IFN-CNR, Piazza L. da Vinci 32, Milano, I-20133, Italy.
  • Schuck PJ; Dipartimento di Fisica, Politecnico di Milano, Piazza L. da Vinci 32, Milano, I-20133, Italy.
  • Knorr A; Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
  • Cerullo G; Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
  • Conte SD; Functional Nanosystems, Istituto Italiano di Tecnologia (IIT), via Morego, 30, Genova, 16163, Italy.
Nat Commun ; 11(1): 5277, 2020 Oct 19.
Article en En | MEDLINE | ID: mdl-33077721
ABSTRACT
The equilibrium and non-equilibrium optical properties of single-layer transition metal dichalcogenides (TMDs) are determined by strongly bound excitons. Exciton relaxation dynamics in TMDs have been extensively studied by time-domain optical spectroscopies. However, the formation dynamics of excitons following non-resonant photoexcitation of free electron-hole pairs have been challenging to directly probe because of their inherently fast timescales. Here, we use extremely short optical pulses to non-resonantly excite an electron-hole plasma and show the formation of two-dimensional excitons in single-layer MoS2 on the timescale of 30 fs via the induced changes to photo-absorption. These formation dynamics are significantly faster than in conventional 2D quantum wells and are attributed to the intense Coulombic interactions present in 2D TMDs. A theoretical model of a coherent polarization that dephases and relaxes to an incoherent exciton population reproduces the experimental dynamics on the sub-100-fs timescale and sheds light into the underlying mechanism of how the lowest-energy excitons, which are the most important for optoelectronic applications, form from higher-energy excitations. Importantly, a phonon-mediated exciton cascade from higher energy states to the ground excitonic state is found to be the rate-limiting process. These results set an ultimate timescale of the exciton formation in TMDs and elucidate the exceptionally fast physical mechanism behind this process.

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Nat Commun Asunto de la revista: BIOLOGIA / CIENCIA Año: 2020 Tipo del documento: Article País de afiliación: Italia

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Nat Commun Asunto de la revista: BIOLOGIA / CIENCIA Año: 2020 Tipo del documento: Article País de afiliación: Italia