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Shaojun Wang
Shaojun Wang
Soochow University, TU/e, University of Strasbourg
Verified email at suda.edu.cn - Homepage
Title
Cited by
Cited by
Year
Coherent Coupling of WS2 Monolayers with Metallic Photonic Nanostructures at Room Temperature
S Wang, S Li, T Chervy, A Shalabney, S Azzini, E Orgiu, JA Hutchison, ...
Nano letters 16 (7), 4368-4374, 2016
3072016
Non‐Radiative Energy Transfer Mediated by Hybrid Light‐Matter States
X Zhong, T Chervy, S Wang, J George, A Thomas, JA Hutchison, ...
Angewandte Chemie 128 (21), 6310-6314, 2016
2712016
Room Temperature Chiral Coupling of Valley Excitons with Spin-Momentum Locked Surface Plasmons
T Chervy, S Azzini, E Lorchat, S Wang, Y Gorodetski, JA Hutchison, ...
ACS Photonics, 2018
1532018
Quantum yield of polariton emission from hybrid light-matter states
S Wang, T Chervy, J George, JA Hutchison, C Genet, TW Ebbesen
The journal of physical chemistry letters 5 (8), 1433-1439, 2014
1362014
Ultra-strong coupling of molecular materials: spectroscopy and dynamics
J George, S Wang, T Chervy, A Canaguier-Durand, G Schaeffer, JM Lehn, ...
Faraday discussions 178, 281-294, 2015
1342015
Limits to Strong Coupling of Excitons in Multilayer WS2 with Collective Plasmonic Resonances
S Wang, Q Le-Van, F Vaianella, B Maes, S Eizagirre Barker, RH Godiksen, ...
Acs Photonics 6 (2), 286-293, 2019
792019
Phase transition of a perovskite strongly coupled to the vacuum field
S Wang, A Mika, JA Hutchison, C Genet, A Jouaiti, MW Hosseini, ...
Nanoscale 6 (13), 7243-7248, 2014
652014
Strong Light‐Molecule Coupling on Plasmonic Arrays of Different Symmetry
A Salomon, S Wang, JA Hutchison, C Genet, TW Ebbesen
ChemPhysChem 14 (9), 1882-1886, 2013
532013
Exciton-polaritons with magnetic and electric character in all-dielectric metasurfaces
GW Castellanos, S Murai, TV Raziman, S Wang, M Ramezani, AG Curto, ...
ACS Photonics 7 (5), 1226-1234, 2020
502020
Enhanced delayed fluorescence in tetracene crystals by strong light‐matter coupling
AM Berghuis, A Halpin, Q Le‐Van, M Ramezani, S Wang, S Murai, ...
Advanced Functional Materials 29 (36), 1901317, 2019
422019
Collective Mie exciton-polaritons in an atomically thin semiconductor
S Wang, TV Raziman, S Murai, GW Castellanos, P Bai, AM Berghuis, ...
The Journal of Physical Chemistry C 124 (35), 19196-19203, 2020
292020
Preserving the emission lifetime and efficiency of a monolayer semiconductor upon transfer
S Eizagirre Barker, S Wang, RH Godiksen, GW Castellanos, M Berghuis, ...
Advanced Optical Materials 7 (13), 1900351, 2019
282019
Plasmonic nanoantenna arrays as efficient etendue reducers for optical detection
S Wang, Q Le-Van, T Peyronel, M Ramezani, N Van Hoof, TG Tiecke, ...
ACS Photonics 5 (6), 2478-2485, 2018
282018
Light–matter coupling strength controlled by the orientation of organic crystals in plasmonic cavities
AM Berghuis, V Serpenti, M Ramezani, S Wang, J Gómez Rivas
The Journal of Physical Chemistry C 124 (22), 12030-12038, 2020
272020
Effective negative diffusion of singlet excitons in organic semiconductors
AM Berghuis, TV Raziman, A Halpin, S Wang, AG Curto, JG Rivas
The journal of physical chemistry letters 12 (4), 1360-1366, 2021
252021
Tracking surface plasmon pulses using ultrafast leakage imaging
Y Gorodetski, T Chervy, S Wang, JA Hutchison, A Drezet, C Genet, ...
Optica 3 (1), 48-53, 2016
192016
Ultrafast dynamics of nonequilibrium organic exciton–polariton condensates
M Ramezani, A Halpin, S Wang, M Berghuis, JG Rivas
Nano Letters 19 (12), 8590-8596, 2019
162019
Correlated exciton fluctuations in a two-dimensional semiconductor on a metal
RH Godiksen, S Wang, TV Raziman, MHD Guimaraes, JG Rivas, ...
Nano letters 20 (7), 4829-4836, 2020
122020
High-Q collective Mie resonances in monocrystalline silicon nanoantenna arrays for the visible light
Z Zhang, P Liu, W Lu, P Bai, B Zhang, Z Chen, SA Maier, JG Rivas, ...
Fundamental Research 3 (5), 822-830, 2023
102023
Transition metal dichalcogenide metaphotonic and self-coupled polaritonic platform grown by chemical vapor deposition
F Shen, Z Zhang, Y Zhou, J Ma, K Chen, H Chen, S Wang, J Xu, Z Chen
Nature Communications 13 (1), 5597, 2022
102022
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