Strong Coupling of Coherent Phonons to Excitons in Semiconducting Monolayer MoTe<sub>2</sub>

  • Charles J. Sayers (17048815)
  • Armando Genco (1568389)
  • Chiara Trovatello (9930363)
  • Stefano Dal Conte (1424371)
  • Vladislav O. Khaustov (16505018)
  • Jorge Cervantes-Villanueva (17048818)
  • Davide Sangalli (1424356)
  • Alejandro Molina-Sanchez (9930360)
  • Camilla Coletti (3349526)
  • Christoph Gadermaier (1425100)
  • Giulio Cerullo (118912)
Publication date
September 2023

Abstract

The coupling of the electron system to lattice vibrations and their time-dependent control and detection provide unique insight into the nonequilibrium physics of semiconductors. Here, we investigate the ultrafast transient response of semiconducting monolayer 2H-MoTe2 encapsulated with hBN using broadband optical pump–probe microscopy. The sub-40 fs pump pulse triggers extremely intense and long-lived coherent oscillations in the spectral region of the A′ and B′ exciton resonances, up to ∼20% of the maximum transient signal, due to the displacive excitation of the out-of-plane A1g phonon. Ab initio calculations reveal a dramatic rearrangement of the optical absorption of monolayer MoTe2 induced by an out-of-plane stretching and compression...

Extracted data

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