王绍军

发布时间:2026-03-30浏览次数:4049

I. Lower-Dimensional Nanophotonics


1. Shaojun Wang, Songlin Li, Thibault Chervy, Atef Shalabney, Stefano Azzini, Emanuele Orgiu, James A. Hutchison, Cyriaque Genet, Paolo Samorì, and Thomas W. Ebbesen “Coherent Coupling of WS2 Monolayers with Metallic Photonic Nanostructures at Room Temperature”, Nano Letters, 7, 4368-4374 (2016). (Citations>140)

 

2. Thibault Chervy, Stefano Azzini, Etienne Lorchat, Shaojun Wang, Yuri Gorodetski, James A. Hutchison, Stéphane Berciaud, Thomas W. Ebbesen, and Cyriaque Genet, “Room Temperature Chiral Coupling of Valley Excitons with Spin-Momentum Locked Surface Plasmons”, arXiv:1701.07972 (2017), ACS Photonics, 4, 1281-1287 (2018) (Citations>49)

 

3. Shaojun Wang,* Quynh Le-Van, Fabio Vaianella,  Bjorn Maes, Simone Eizagirre Barker, Rasmus Hjelmgart, Alberto G. Curto, and Jaime Gómez Rivas, “Limits to Strong Coupling of Excitons in Multilayer WS2 with Collective Plasmonic Resonances”, arXiv:1808.08388 (2018), ACS Photonics, 2, 286-293 (2019)  (Citations>10)

 

4. Simone Eizagirre Barker, Shaojun Wang,* Rasmus Hjelmgart, Gabi Castellanos Gonzalez, Matthijs Berghuis, T. V. Raziman, Alberto G. Curto, and Jaime Gómez Rivas, “Preserving the Emission Efficiency and Lifetime of a Monolayer Semiconductorupon Transfer”, Advanced Optical Materials, 7, 1900351 (2019) 


II. Applications of Optical Nanoantenna Arrays


5. Shaojun Wang,* Quynh Le-Van, Thibault Peyronel, Mohammad Ramezani, Niels Van Hoof, Tobias G. Tiecke, and Jaime Gómez Rivas, “Plasmonic Nanoantenna Arrays as Efficient Etendue Reducers for Optical Detection”, ACS Photonics, 6, 2478-2485 (2018)

 

6. Shunsuke Murai, K. Noguchi, Gabriel W. Castellanos, Shaojun Wang, Katsuhisa Tanaka, and Jaime Gómez Rivas, “Light Conversion Efficiency of Emitters on Top of Plasmonic and Dielectric Arrays of Nanoparticles”, ECS Journal of Solid State Science and Technology, 1, 011614 (2020)Focused issue, Recent Advances in Wide Bandgap III-Nitride Devices and Solid State Lighting: A Tribute to Isamu Akasaki.


III. Strong Coupling in Organic Materials


7. Shaojun Wang, Thibault Chervy, Jino George, James A. Hutchison, Cyriaque Genet, Thomas W. Ebbesen, “Quantum Yield of Polariton Emission from Hybrid Light-Matter States”, The Journal of Physical Chemistry Letters, 8, 1433-1439 (2014) (Citations>60)

 

8. Jino George,# Shaojun Wang,# Thibault Chervy, # Antoine Canaguier-Durand, Gael Schaeffer, Jean-Marie Lehn, James A. Hutchison, Cyriaque Genet, and Thomas W. Ebbesen,Ultra-strong Coupling of Molecular Materials: Spectroscopy and Dynamics”, Faraday Discussions, 178, 281-294 (2015)  (Citations>75)

 

9. Xiaolan Zhong, Thibault Chervy, Shaojun Wang, Jino George, Anoop Thomas, James A. Hutchison, Eloise Devaux, Cyriaque Genet, and Thomas W. Ebbesen, “Non‐Radiative Energy Transfer Mediated by Hybrid Light‐Matter States”, Angew. Chem. Int. Ed., 21, 6202-6206 (2016) (Hot paper, Citations>80)

 

10. Mohammad Ramezani, Alexei Halpin, Shaojun Wang, Matthijs Berghuis, and Jaime Gómez Rivas, “Ultrafast Dynamics of Non-equilibrium Plasmon-Exciton-Polariton Condensate”, Nano Letters,19,8590 (2019)


11. Anton Matthijs Berghuis, Alexei Halpin, Quynh Le-Van, Mohammad Ramezani, Shaojun Wang, Shunsuke Murai, and Jaime Gómez Rivas, “Enhanced Delayed Fluorescence in Tetracene Crystals by Strong Light‐Matter Coupling”, Advanced Functional Materials, 36, 1901317 (2019), selected as Frontispiece.

 

12. Shaojun Wang, Arkadiusz Mika, James A. Hutchison, Cyriaque Genet, Abdelaziz Jouaiti, Mir Wais Hosseini and Thomas W. Ebbesen, “Phase Transition of a Perovskite Strongly Coupled to the Vacuum Field”, Nanoscale, 13, 7243-7248 (2014) (Citations>35)

 

IV. Surface Plasmons


13. Yuri Gorodetski, Thibault Chervy, Shaojun Wang, James A. Hutchison, Aurélien Drezet, Cyriaque Genet, and Thomas W. Ebbesen, “Ultrafast Leakage Imaging and Tracking of Surface Plasmon Pulses”, Optica, 1, 48-53 (2016)

 

14. Adi Salomon,Shaojun Wang, James A Hutchison, Cyriaque Genet, and Thomas W Ebbesen, “Strong Light‐Molecule Coupling on Plasmonic Arrays of Different Symmetry”, ChemPhysChem, 14, 1882-1886 (2013)