Monatomic layers of graphite are emerging as building blocks for novel optoelectronic devices. Experimental studies on a single graphite layer (graphene) are today possible since very thin graphite can be identified on a dielectric substrate using a normal optical microscope. We investigate the mechanism behind the strong visibility of graphite, and we discuss the importance of substrates and of the microscope objective used for the imaging
We investigate theoretically the light reflectance of a graphene layer prepared on the top of one-di...
The discovery and rise of graphene were historically enabled by its ∼10% optical contrast on special...
Optical reflection microscopy is one of the main imaging tools to visualize graphene microstructures...
Monatomic layers of graphite are emerging as building blocks for novel optoelectronic devices. Exper...
Visibility and simple optical diagnostics possibilities of graphene layers on dielectric and semicon...
The visibility of graphene is greatly increased by illuminating samples deposited on transparent die...
Optical microscopy as a means to identify graphene is hampered by the low absorptivity of its monola...
We investigate graphene and graphene layers on different substrates by monochromatic and white-light...
For the investigation of 2D layered materials such as graphene, transition-metal dichalcogenides, bo...
We investigate graphene and graphene layers on different substrates by monochromatic and white-light...
The authors model the optical visibility of monolayer and bilayer graphene deposited on a SiO2/Si su...
The authors model the optical visibility of monolayer and bilayer graphene deposited on a SiO2/Si su...
The optical and electrical properties of the recently isolated two dimensional crystal graphene a...
A simple optical method is presented for identifying and measuring the effective optical properties ...
Optical reflection microscopy is one of the main imaging tools to visualize graphene microstructures...
We investigate theoretically the light reflectance of a graphene layer prepared on the top of one-di...
The discovery and rise of graphene were historically enabled by its ∼10% optical contrast on special...
Optical reflection microscopy is one of the main imaging tools to visualize graphene microstructures...
Monatomic layers of graphite are emerging as building blocks for novel optoelectronic devices. Exper...
Visibility and simple optical diagnostics possibilities of graphene layers on dielectric and semicon...
The visibility of graphene is greatly increased by illuminating samples deposited on transparent die...
Optical microscopy as a means to identify graphene is hampered by the low absorptivity of its monola...
We investigate graphene and graphene layers on different substrates by monochromatic and white-light...
For the investigation of 2D layered materials such as graphene, transition-metal dichalcogenides, bo...
We investigate graphene and graphene layers on different substrates by monochromatic and white-light...
The authors model the optical visibility of monolayer and bilayer graphene deposited on a SiO2/Si su...
The authors model the optical visibility of monolayer and bilayer graphene deposited on a SiO2/Si su...
The optical and electrical properties of the recently isolated two dimensional crystal graphene a...
A simple optical method is presented for identifying and measuring the effective optical properties ...
Optical reflection microscopy is one of the main imaging tools to visualize graphene microstructures...
We investigate theoretically the light reflectance of a graphene layer prepared on the top of one-di...
The discovery and rise of graphene were historically enabled by its ∼10% optical contrast on special...
Optical reflection microscopy is one of the main imaging tools to visualize graphene microstructures...