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Upconverted electroluminescence via Auger scattering of interlayer excitons in van der Waals heterostructures

Autor
Geim, Andre
Falko, Vladimir
Danovich, Mark
Faugeras, Clement
Watanabe, Kenji
Taniguchi, Takashi
Binder, Johannes
Wysmołek, Andrzej
Potemski, Marek
Kozikov, Aleksey
Data publikacji
2019
Abstrakt (EN)

The intriguing physics of carrier-carrier interactions, which likewise affect the operation of light emitting devices, stimulate the research on semiconductor structures at high densities of excited carriers, a limit reachable at large pumping rates or in systems with long-lived electron-hole pairs. By electrically injecting carriers into WSe 2 /MoS 2 type-II heterostructures which are indirect in real and k-space, we establish a large population of typical optically silent interlayer excitons. Here, we reveal their emission spectra and show that the emission energy is tunable by an applied electric field. When the population is further increased by suppressing the radiative recombination rate with the introduction of an hBN spacer between WSe 2 and MoS 2 , Auger-type and exciton-exciton annihilation processes become important. These processes are traced by the observation of an up-converted emission demonstrating that excitons gaining energy in non-radiative Auger processes can be recovered and recombine radiatively.

Dyscyplina PBN
nauki fizyczne
Czasopismo
Nature Communications
ISSN
2041-1723
Data udostępnienia w otwartym dostępie
2019-05-27
Licencja otwartego dostępu
Uznanie autorstwa