234. Non-linear Photoluminescence from Graphene
M. Handloser, G. Piredda, A. Lombardo, A.C. Ferrari, A. Hartschuh; OSA Technical Digest, JSII1_2 (2011).
233.
Graphene composites for ultrafast photonics. F.
Bonaccorso, Z. Sun, T. Hasan, A. C. Ferrari;
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232.
Graphene-Driven Revolutions in ICT and Beyond. J. Kinaret,
A. C. Ferrari, V. Fal’ko, J. Kivioja;
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231. Plasmonic Nanostructure Enhanced Graphene-based Photodetectors.
T. J. Echtermeyer, L. Britnell, S. Milana, A. Lombardo, R. V.
Gorbachev, A. N. Grigorenko, A. K. Geim, K. S. Novoselov, A. C.
Ferrari; AAPP, 89, 1, C1V89S1P030 (2011) (pdf).
230. Optical Trapping of Carbon Nanotubes and Graphene.
S. Vasi, M. A. Monaca, M. G. Donato, F. Bonaccorso, G. Privitera, O.
Trushkevych, G. Calogero, B. Fazio, A. Irrera, M. A. Iati, R. Saija, P.
Denti, F. Borghese, P. H. Jones, A. C. Ferrari,P. G. Gucciardi, O. M.
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229.
Ultrafast Raman Laser Mode-locked by Nanotubes. C. E. S.
Castellani, E. J. R. Kelleher, J. C. Travers, D. Popa, T. Hasan, Z.
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228.
Nanotube and Graphene Polymer Composites for Photonics and
Optoelectronics. T. Hasan, V. Scardaci, P.H. Tan, F.
Bonaccorso, A.G. Rozhin, Z. Sun, A. C. Ferrari; Molecular-
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227.
Self-Aligned Coupled Nanowire Transistor. T. S. Kulmala,
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226.
Fibre sources in the deep ultraviolet. Z. Sun, A. C.
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225.
Strong plasmonic enhancement of photovoltage in graphene.
T. J. Echtermeyer, L. Britnell, P. K. Jasnos, A. Lombardo, R. V.
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224.
Molar Extinction Coefficient of Single-Wall Carbon Nanotubes.
F. Schöppler, C. Mann, T. C. Hain, F. Neubauer, G. Privitera, F. Bonaccorso, D. Chu, A. C. Ferrari, T. Hertel; J.
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223.
Nanotube-based passively mode-locked Raman laser. C. E.
Schmidt Castellani, E. J. Kelleher, J. C. Travers, D. Popa, Z. Sun, T.
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222.
Sub-100fs pulse generation from a fiber oscillator mode-locked by
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221.
High-power ultrafast solid-state laser using graphene based saturable
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Zhang, L. Sun, L. Guo, W. Hou, J. Li, A. C. Ferrari; Proceedings
of Conference on Lasers and Electro-Optics (CLEO), JWA79, (2011)
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220.
Quantifying defects in graphene via Raman spectroscopy at different
excitation energies. L. G. Cançado, A. Jorio, E.
H. Martins Ferreira, F. Stavale, C. A. Achete, R. B. Capaz, M. V. O.
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219.
High pressure Raman scattering of silicon nanowires. S.
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218.
Development of a universal stress sensor for graphene and carbon fibres.
O. Frank, G. Tsoukleri, I. Riaz, K. Papagelis, J. Parthenios, A. C.
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217.
Tilted potential induced coupling of localized states in a graphene
nanoconstriction. M. R. Connolly, K. L. Chiu, A. Lombardo,
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216.
Intercalation of Few-Layer Graphite Flakes
with FeCl3: Raman Determination of Fermi Level,
Layer by Layer Decoupling, and Stability. W. J. Zhao, P.
H. Tan, J. Liu, A. C. Ferrari; J. Am.
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215.
Graphene Q-switched, tunable fiber laser.
D. Popa, Z. Sun, T. Hasan, F. Torrisi, F. Wang, A. C.
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214.
Atomic force microscope nanolithography of
graphene: Cuts, pseudocuts, and tip current measurements.
R. K. Puddy, P. H. Scard, D. Tyndall, M. R. Connolly, C. G. Smith, G.
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213.
Photoluminescence of CdSe Nanowires Grown
With and Without Metal Catalyst. A. Fasoli, A. Colli, F.
Martelli, S. Pisana, P. H. Tan, A. C. Ferrari;
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