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Dive into the research topics where F. Cadiz is active.

Publication


Featured researches published by F. Cadiz.


Physical Review B | 2016

Exciton radiative lifetime in transition metal dichalcogenide monolayers

Cédric Robert; D. Lagarde; F. Cadiz; Gang Wang; Benjamin Lassagne; T. Amand; A. Balocchi; P. Renucci; Sefaattin Tongay; B. Urbaszek; X. Marie

We have investigated the exciton dynamics in transition metal dichalcogenide monolayers using time-resolved photoluminescence experiments performed with optimized time resolution. For


Physical Review X | 2017

Excitonic Linewidth Approaching the Homogeneous Limit in MoS2 -Based van der Waals Heterostructures

F. Cadiz; E. Courtade; Cédric Robert; Gang Wang; Yuxia Shen; Hui Cai; Takashi Taniguchi; Kenji Watanabe; H. Carrère; D. Lagarde; M. Manca; T. Amand; P. Renucci; Sefaattin Tongay; X. Marie; B. Urbaszek

\mathrm{MoS}{\mathrm{e}}_{2}


Nature Communications | 2017

Enabling valley selective exciton scattering in monolayer WSe2 through upconversion.

M. Manca; M. M. Glazov; Clotilde Des Robert; F. Cadiz; Takashi Taniguchi; Kenji Watanabe; E. Courtade; T. Amand; P. Renucci; X. Marie; Gang Wang; B. Urbaszek

monolayer, we measure


Physical Review B | 2017

Charged excitons in monolayer WSe2: Experiment and theory

E. Courtade; M. Semina; M. Manca; M. M. Glazov; Cédric Robert; F. Cadiz; Gang Wang; Takashi Taniguchi; Kenji Watanabe; M Pierre; W Escoffier; Eougenious Ivchenko; P. Renucci; X. Marie; T. Amand; B. Urbaszek

{\ensuremath{\tau}}_{\mathrm{rad}}^{0}=1.8\ifmmode\pm\else\textpm\fi{}0.2\phantom{\rule{0.16em}{0ex}}\mathrm{ps}


Physical Review Letters | 2017

In-Plane Propagation of Light in Transition Metal Dichalcogenide Monolayers: Optical Selection Rules

Gang Wang; Cédric Robert; M. M. Glazov; F. Cadiz; E. Courtade; T. Amand; D. Lagarde; T. Taniguchi; Kenji Watanabe; B. Urbaszek; X. Marie

at


arXiv: Materials Science | 2016

Ultra-low power threshold for laser induced changes in optical properties of 2D molybdenum dichalcogenides

F. Cadiz; Cédric Robert; Gang Wang; Wilson Kong; Xi Fan; Mark Blei; D. Lagarde; M. Manca; Takashi Taniguchi; Kenji Watanabe; T. Amand; X. Marie; P. Renucci; Sefaattin Tongay; B. Urbaszek

T=7\phantom{\rule{0.16em}{0ex}}\mathrm{K}


Applied Physics Letters | 2016

Well separated trion and neutral excitons on superacid treated MoS2 monolayers

F. Cadiz; Simon Tricard; D. Lagarde; Gang Wang; Cédric Robert; P. Renucci; B. Urbaszek; X. Marie

that we interpret as the intrinsic radiative recombination time. Similar values are found for


Physical Review B | 2016

Excitonic properties of semiconducting monolayer and bilayer MoTe2

Cédric Robert; R. Picard; D. Lagarde; Gang Wang; J. P. Echeverry; F. Cadiz; P. Renucci; Alexander Högele; T. Amand; X. Marie; Iann C. Gerber; B. Urbaszek

\mathrm{WS}{\mathrm{e}}_{2}


Journal of Applied Physics | 2013

Surface recombination in doped semiconductors: Effect of light excitation power and of surface passivation

F. Cadiz; D. Paget; A. C. H. Rowe; V. L. Berkovits; V. P. Ulin; Steve Arscott; E. Peytavit

monolayers. Our detailed analysis suggests the following scenario: at low temperature


Journal of Applied Physics | 2012

Imaging ambipolar diffusion of photocarriers in GaAs thin films

D. Paget; F. Cadiz; A. C. H. Rowe; Francois Moreau; Steve Arscott; E. Peytavit

(T\ensuremath{\lesssim}50\phantom{\rule{0.16em}{0ex}}\mathrm{K})

Collaboration


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T. Amand

University of Toulouse

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X. Marie

University of Toulouse

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B. Urbaszek

University of Toulouse

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D. Paget

École Polytechnique

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P. Renucci

University of Toulouse

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D. Lagarde

University of Toulouse

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Gang Wang

Chinese Academy of Sciences

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Kenji Watanabe

National Institute for Materials Science

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