Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fermi level of intrinsic graphene can be engineered to support surface plasmons (SPs). The current solid back electrical gating and chemical doping methods cannot facilitate the demonstration of graphene SPs at the near-infrared (NIR) window because of the limited shift of the Fermi level. Here, we present the evidence for the existence of graphene SPs on a tapered graphene-silicon waveguide tip at a NIR wavelength, employing a surface carrier transfer method with molybdenum trioxides. The coupling between the graphene surface plasmons and the guiding mode in silicon waveguides allows for the observation of the concentrated field of the SPs in ...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
© 2017 Macmillan Publishers Limited, part of Springer Nature. Terahertz (THz) fields are widely used...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
Surface plasmons are collective oscillations of free charge carriers confined in interface between t...
Pump-probe spectroscopy is central for exploring ultrafast dynamics of fundamental excitations, coll...
We employ tip-enhanced infrared near-field microscopy to study the plasmonic properties of epitaxial...
Pump-probe spectroscopy is central for exploring ultrafast dynamics of fundamental excitations, coll...
We employ tip-enhanced infrared near-field microscopy to study the plasmonic properties of epitaxial...
Electrical detection of graphene plasmons is important for developing mid-infrared photodetection an...
We used scattering-type scanning near-field optical microscopy (s-SNOM) to investigate the plasmonic...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
One of the most fascinating and important merits of graphene plasmonics is their tunability over a w...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
© 2017 Macmillan Publishers Limited, part of Springer Nature. Terahertz (THz) fields are widely used...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
Graphene has been identified as an emerging horizon for a nanoscale photonic platform because the Fe...
This dissertation presents infrared nano-spectroscopy and nano-imaging studies of graphene plasmons ...
Surface plasmons are collective oscillations of free charge carriers confined in interface between t...
Pump-probe spectroscopy is central for exploring ultrafast dynamics of fundamental excitations, coll...
We employ tip-enhanced infrared near-field microscopy to study the plasmonic properties of epitaxial...
Pump-probe spectroscopy is central for exploring ultrafast dynamics of fundamental excitations, coll...
We employ tip-enhanced infrared near-field microscopy to study the plasmonic properties of epitaxial...
Electrical detection of graphene plasmons is important for developing mid-infrared photodetection an...
We used scattering-type scanning near-field optical microscopy (s-SNOM) to investigate the plasmonic...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
One of the most fascinating and important merits of graphene plasmonics is their tunability over a w...
Surface plasmons in graphene have many promising properties, such as high confinement, low losses, a...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
© 2017 Macmillan Publishers Limited, part of Springer Nature. Terahertz (THz) fields are widely used...