2D materials are considered for applications that require strong light-matter interaction because of the apparently giant oscillator strength of the exciton transitions in the absorbance spectrum. Nevertheless, the effective oscillator strengths of these transitions have been scarcely reported, nor is there a consistent interpretation of the obtained values. Here, we analyse the transition dipole moment and the ensuing oscillator strength of the exciton transition in 2D CdSe nanoplatelets by means of the optically induced Stark effect (OSE). Intriguingly, we find that the exciton absorption line reacts to a high intensity optical field as a transition with an oscillator strength FStark that is 50 times smaller than expected based on the lin...
CdSe nanoplatelets can be synthesized with different lateral sizes; very small nanoplatelets have al...
CdSe nanoplatelets can be synthesized with different lateral sizes; very small nanoplatelets have al...
Colloidal semiconductor nanoplatelets exhibit quantum size effects due to their thickness of only fe...
2D materials are considered for applications that require strong light-matter interaction because of...
2D materials are considered for applications that require strong light-matter interaction because of...
Colloidal CdSe nanoplatelets (NPLs) are unique systems to study two-dimensional excitons and exciton...
Colloidal CdSe nanoplatelets (NPLs) are unique systems to study two-dimensional excitons and exciton...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
Colloidal CdSe nanoplatelets (NPLs) are unique systems to study two-dimensional excitons and exciton...
Colloidal semiconductor nanoplatelets exhibit strong quantum confinement for electrons and holes as ...
Colloidal semiconductor nanoplatelets exhibit strong quantum confinement for electrons and holes as ...
Two-dimensional CdSe nanoplatelets are promising lasing materials. Their large lateral areas reduce ...
CdSe nanoplatelets can be synthesized with different lateral sizes; very small nanoplatelets have al...
CdSe nanoplatelets can be synthesized with different lateral sizes; very small nanoplatelets have al...
Colloidal semiconductor nanoplatelets exhibit quantum size effects due to their thickness of only fe...
2D materials are considered for applications that require strong light-matter interaction because of...
2D materials are considered for applications that require strong light-matter interaction because of...
Colloidal CdSe nanoplatelets (NPLs) are unique systems to study two-dimensional excitons and exciton...
Colloidal CdSe nanoplatelets (NPLs) are unique systems to study two-dimensional excitons and exciton...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
We measured the intrinsic ground-state exciton dephasing and population dynamics in colloidal quasi-...
Colloidal CdSe nanoplatelets (NPLs) are unique systems to study two-dimensional excitons and exciton...
Colloidal semiconductor nanoplatelets exhibit strong quantum confinement for electrons and holes as ...
Colloidal semiconductor nanoplatelets exhibit strong quantum confinement for electrons and holes as ...
Two-dimensional CdSe nanoplatelets are promising lasing materials. Their large lateral areas reduce ...
CdSe nanoplatelets can be synthesized with different lateral sizes; very small nanoplatelets have al...
CdSe nanoplatelets can be synthesized with different lateral sizes; very small nanoplatelets have al...
Colloidal semiconductor nanoplatelets exhibit quantum size effects due to their thickness of only fe...