Due to their novel electronic and optical properties, atomically thin layered two-dimensional (2D) materials are becoming promising to realize novel functional optoelectronic devices including photodetectors, modulators, and lasers. However, light–matter interactions in 2D materials are often weak because of the atomic-scale thickness, thus limiting the performances of these devices. Metallic nanostructures supporting surface plasmon polaritons show strong ability to concentrate light within subwavelength region, opening thereby new avenues for strengthening the light–matter interactions and miniaturizing the devices. This review starts to present how to use metallic nanostructures to enhance light–matter interactions in 2D materials, mainl...
In this review, we survey the recent advances in nonlinear optics and the applications of two-dimens...
Recently, ignited by the pioneer work in the area of graphene plasmonics, plasmonics with two dimens...
The possibility to control the properties of low-dimensional semiconductors via the exploitation of ...
In the last decade, the rise of two-dimensional (2D) materials has attracted a tremendous amount of ...
In the last decade, the rise of two-dimensional (2D) materials has attracted a tremendous amount of ...
The rapid development and unique properties of two-dimensional (2D) materials, such as graphene, pho...
Two-dimensional materials exhibit diverse electronic properties, ranging from insulating hexagonal b...
Two-dimensional materials exhibit diverse electronic properties, ranging from insulating hexagonal b...
Two-dimensional materials exhibit diverse electronic properties, ranging from insulating hexagonal b...
Two-dimensional layered crystals, including graphene and transition metal dichalcogenides, represent...
© 2021 Nima Sefidmooye AzarThe discovery of graphene in 2004 opened the door to the wonderful world ...
peer reviewedTwo-dimensional layered crystals, including graphene and transition metal dichalcogenid...
In this review, we survey the recent advances in nonlinear optics and the applications of two-dimens...
Copyright of 2019 Optical Society of AmericaRecent advances in nanofabrication technology now enable...
Two-dimensional (2D) materials including graphene, transition metal dichalcogenides, black phosphoru...
In this review, we survey the recent advances in nonlinear optics and the applications of two-dimens...
Recently, ignited by the pioneer work in the area of graphene plasmonics, plasmonics with two dimens...
The possibility to control the properties of low-dimensional semiconductors via the exploitation of ...
In the last decade, the rise of two-dimensional (2D) materials has attracted a tremendous amount of ...
In the last decade, the rise of two-dimensional (2D) materials has attracted a tremendous amount of ...
The rapid development and unique properties of two-dimensional (2D) materials, such as graphene, pho...
Two-dimensional materials exhibit diverse electronic properties, ranging from insulating hexagonal b...
Two-dimensional materials exhibit diverse electronic properties, ranging from insulating hexagonal b...
Two-dimensional materials exhibit diverse electronic properties, ranging from insulating hexagonal b...
Two-dimensional layered crystals, including graphene and transition metal dichalcogenides, represent...
© 2021 Nima Sefidmooye AzarThe discovery of graphene in 2004 opened the door to the wonderful world ...
peer reviewedTwo-dimensional layered crystals, including graphene and transition metal dichalcogenid...
In this review, we survey the recent advances in nonlinear optics and the applications of two-dimens...
Copyright of 2019 Optical Society of AmericaRecent advances in nanofabrication technology now enable...
Two-dimensional (2D) materials including graphene, transition metal dichalcogenides, black phosphoru...
In this review, we survey the recent advances in nonlinear optics and the applications of two-dimens...
Recently, ignited by the pioneer work in the area of graphene plasmonics, plasmonics with two dimens...
The possibility to control the properties of low-dimensional semiconductors via the exploitation of ...