Graphene has been an intensely studied material, owing to its unique band structure and concomitant outstanding electronic properties. In the past decades, ultrafast terahertz (THz) spectroscopy has developed into a powerful tool to characterize ultrafast charge carrier dynamics in a wide range of materials and material structures. In this Perspective we review recent experimental work exploring the ultrafast electron dynamics in graphene in the THz spectral range, and present a simple thermodynamic picture describing the THz linear, nonlinear, and photo-induced conductivity of this remarkable material
We show that the transmission of a terahertz (THz) pulse through single-layer graphene is strongly n...
Optical-pump terahertz-probe differential transmission measurements of as-prepared single layer grap...
Optical-pump terahertz-probe differential transmission measurements of as-prepared single layer grap...
The electronic transport dynamics of graphene charge carriers at femtosecond (10-15 s) to picosecond...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Graphene has proved itself as being unique in terms of fundamental physics, and of particular import...
© 2019 IEEE. Intraband scattering dynamics of optically excited graphene has been explored by using ...
Abstract Graphene has proved itself as being unique in terms of fundamental physics, and of particul...
In this time-resolved photoconductivity experiment we photo-excite graphene with femtosecond pulses ...
In this time-resolved photoconductivity experiment we photo-excite graphene with femtosecond pulses ...
In this time-resolved photoconductivity experiment we photo-excite graphene with femtosecond pulses ...
By using optical pump-terahertz (THz) probe spectroscopy, the photoexcited terahertz conductivity dy...
International audienceThe control of carrier transport by electrical, chemical, or optical Fermi lev...
We studied the nonlinear optical properties of single layer graphene using high terahertz (THz) fiel...
International audienceThe control of carrier transport by electrical, chemical, or optical Fermi lev...
We show that the transmission of a terahertz (THz) pulse through single-layer graphene is strongly n...
Optical-pump terahertz-probe differential transmission measurements of as-prepared single layer grap...
Optical-pump terahertz-probe differential transmission measurements of as-prepared single layer grap...
The electronic transport dynamics of graphene charge carriers at femtosecond (10-15 s) to picosecond...
Graphene has long been predicted to show exceptional nonlinear optical properties, especially in the...
Graphene has proved itself as being unique in terms of fundamental physics, and of particular import...
© 2019 IEEE. Intraband scattering dynamics of optically excited graphene has been explored by using ...
Abstract Graphene has proved itself as being unique in terms of fundamental physics, and of particul...
In this time-resolved photoconductivity experiment we photo-excite graphene with femtosecond pulses ...
In this time-resolved photoconductivity experiment we photo-excite graphene with femtosecond pulses ...
In this time-resolved photoconductivity experiment we photo-excite graphene with femtosecond pulses ...
By using optical pump-terahertz (THz) probe spectroscopy, the photoexcited terahertz conductivity dy...
International audienceThe control of carrier transport by electrical, chemical, or optical Fermi lev...
We studied the nonlinear optical properties of single layer graphene using high terahertz (THz) fiel...
International audienceThe control of carrier transport by electrical, chemical, or optical Fermi lev...
We show that the transmission of a terahertz (THz) pulse through single-layer graphene is strongly n...
Optical-pump terahertz-probe differential transmission measurements of as-prepared single layer grap...
Optical-pump terahertz-probe differential transmission measurements of as-prepared single layer grap...