The single atom thick two-dimensional graphene is a promising material for various applications due to its extraordinary electronic, optical, optoelectronic, and mechanical properties. The demand for developing graphene based applications has entailed a requirement for development of methods for fast imaging techniques for graphene. Here, we demonstrate imaging of graphene with femtosecond wide-field four-wave mixing microscopy. The method provides a sensitive, non-destructive approach for rapid large area characterization of graphene. We show that the method is suitable for online following of a laser patterning process of microscale structures on single-layer graphene.peerReviewe
This paper presents an experimental setup tailored for robotic processing of graphene with in-situ v...
Optical wide-field imaging of sub-diffraction limit nanostructures is of interest in a wide array of...
Graphene grain boundaries (GBs) and other nanodefects can deteriorate electronic properties. Here, u...
Although existing methods (chemical vapor deposition, mechanical exfoliation, etc.) are available to...
We investigate near-degenerate four-wave mixing in graphene using femtosecond laser pulse shaping mi...
We investigate near-degenerate four-wave mixing in graphene using femtosecond laser pulse shaping mi...
This thesis presents a study focused on interactions of femtosecond laser pulses with graphene, a ...
Graphene, a monolayer of carbon atoms, is a high-interest material in the research community and sem...
Abstract Inch-Scale High Throughput Metrology of Graphene ...
Nonlinear optical microscopy, based on femtosecond laser spectral reshaping, characterized and image...
In this thesis the nonlinear and nonequilibrium properties of graphene are experimentally investigat...
Phase-shifting interferometric imaging is shown to be a powerful analytical tool for studying graphe...
National audienceGraphene is an important material for next-generation technologies, but the develop...
In this work, we describe the application of an in-house system performing simultaneously Scanning T...
We report an in situ imaging method and use it to reveal the mechanism for the formation of extended...
This paper presents an experimental setup tailored for robotic processing of graphene with in-situ v...
Optical wide-field imaging of sub-diffraction limit nanostructures is of interest in a wide array of...
Graphene grain boundaries (GBs) and other nanodefects can deteriorate electronic properties. Here, u...
Although existing methods (chemical vapor deposition, mechanical exfoliation, etc.) are available to...
We investigate near-degenerate four-wave mixing in graphene using femtosecond laser pulse shaping mi...
We investigate near-degenerate four-wave mixing in graphene using femtosecond laser pulse shaping mi...
This thesis presents a study focused on interactions of femtosecond laser pulses with graphene, a ...
Graphene, a monolayer of carbon atoms, is a high-interest material in the research community and sem...
Abstract Inch-Scale High Throughput Metrology of Graphene ...
Nonlinear optical microscopy, based on femtosecond laser spectral reshaping, characterized and image...
In this thesis the nonlinear and nonequilibrium properties of graphene are experimentally investigat...
Phase-shifting interferometric imaging is shown to be a powerful analytical tool for studying graphe...
National audienceGraphene is an important material for next-generation technologies, but the develop...
In this work, we describe the application of an in-house system performing simultaneously Scanning T...
We report an in situ imaging method and use it to reveal the mechanism for the formation of extended...
This paper presents an experimental setup tailored for robotic processing of graphene with in-situ v...
Optical wide-field imaging of sub-diffraction limit nanostructures is of interest in a wide array of...
Graphene grain boundaries (GBs) and other nanodefects can deteriorate electronic properties. Here, u...