Strong coupling and catenary field enhancement in the hybrid plasmonic metamaterial cavity and TMDC monolayers
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Opto-Electronic Advances
Reference46 articles.
1. Deng F, Liu HF, Xu L, Lan S, Miroshnichenko AE. Strong exciton–plasmon coupling in a WS2 monolayer on Au film hybrid structures mediated by liquid Ga nanoparticles. Laser Photonics Rev 14, 1900420 (2020).
Deng F, Liu HF, Xu L, Lan S, Miroshnichenko AE. Strong exciton–plasmon coupling in a WS2 monolayer on Au film hybrid structures mediated by liquid Ga nanoparticles. Laser Photonics Rev 14, 1900420 (2020).
2. Liu F, Brash AJ, O’Hara J, Martins LMPP, Phillips CL et al. High purcell factor generation of indistinguishable on-chip single photons. Nat Nanotechnol 13, 835–840 (2018).
Liu F, Brash AJ, O’Hara J, Martins LMPP, Phillips CL et al. High purcell factor generation of indistinguishable on-chip single photons. Nat Nanotechnol 13, 835–840 (2018).
3. Santhosh K, Bitton O, Chuntonov L, Haran G. Vacuum Rabi splitting in a plasmonic cavity at the single quantum emitter limit. Nat Commun 7, 11823 (2016).
Santhosh K, Bitton O, Chuntonov L, Haran G. Vacuum Rabi splitting in a plasmonic cavity at the single quantum emitter limit. Nat Commun 7, 11823 (2016).
4. Degen CL, Reinhard F, Cappellaro P. Quantum sensing. Rev Mod Phys 89, 035002 (2017).
Degen CL, Reinhard F, Cappellaro P. Quantum sensing. Rev Mod Phys 89, 035002 (2017).
5. Wang SJ, Li SL, Chervy T, Shalabney A, Azzini S et al. Coherent coupling of WS2 monolayers with metallic photonic nanostructures at room temperature. Nano Lett 16, 4368–4374 (2016).
Wang SJ, Li SL, Chervy T, Shalabney A, Azzini S et al. Coherent coupling of WS2 monolayers with metallic photonic nanostructures at room temperature. Nano Lett 16, 4368–4374 (2016).
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