Atomically thin two-dimensional materials, such as graphene and semiconductor transition metal dichalcogenides (TMDCs), exhibit remarkable and desirable optical and electronic properties. This dissertation focuses on the excitonic properties of monolayer TMDCs taken first in isolation and then in contact with another material. We begin with a study of the exciton binding energy in two monolayer TMDCs, WS₂ and MoS₂. We observe excited states of the exciton by two different optical spectroscopy techniques: reflectance contrast and photoluminescence excitation (PLE) spectroscopy. We fit a hydrogenic model to the energies associated with the excited states and infer a binding energy, which is an order of magnitude higher than the bulk material....
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
textTwo-dimensional semiconductors have long been studied for their unique optical and electronic pr...
CONSPECTUS: Two-dimensional (2D) crystals derived from transition metal dichalcogenides (TMDs) are i...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
Semiconducting transition metal dichalcogenides (TMDs) are 2D sheet-like materials with atomic scale...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
Recently, atomically thin 2D materials have emerged as a new class of nanomaterial with extraordinar...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Since the first report of graphene in 2004, atomically thin materials become more and more attractiv...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
textTwo-dimensional semiconductors have long been studied for their unique optical and electronic pr...
CONSPECTUS: Two-dimensional (2D) crystals derived from transition metal dichalcogenides (TMDs) are i...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
Semiconducting transition metal dichalcogenides (TMDs) are 2D sheet-like materials with atomic scale...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
Recently, atomically thin 2D materials have emerged as a new class of nanomaterial with extraordinar...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
International audienceAtomically thin materials such as graphene and monolayer transition metal dich...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Since the first report of graphene in 2004, atomically thin materials become more and more attractiv...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...