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valley-polarized monolayer exciton-polaritons at room temperature. Phys. Rev. B 96, 241403
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281. H. Yokoyama, Physics and device applications of optical microcavities. Science 256, 66–70
(1992)
282. E.M. Purcell, Spontaneous emission probabilities at radio frequencies. Phys. Rev. 69, 681
(1946)
283. S. Noda, Seeking the ultimate nanolaser. Science 314, 260 (2006)
284. S. Reitzenstein, A. Forchel, Quantum dot micropillars. J. Phys. D Appl. Phys. 43(3), 033001
(2010)
285. C. Chakraborty, L. Kinnischtzke, K.M. Goodfellow, R. Beams, A.N. Vamivakas, Voltagecontrolled quantum light from an atomically thin semiconductor. Nat. Nanotechnol. 10, 507–
511 (2015)
286. Y.-M. He, G. Clark, J.R. Schaibley, Y. He, M.-C. Chen, Y.-J. Wei, X. Ding, Q. Zhang, W. Yao,
X. Xu, C.-Y. Lu, J.-W. Pan, Single quantum emitters in monolayer semiconductors. Nat.
Nanotechnol. 10, 497–502 (2015)
287. M. Koperski, K. Nogajewski, A. Arora, V. Cherkez, P. Mallet, J.-Y. Veuillen, J. Marcus, P. Kossacki, M. Potemski, Single photon emitters in exfoliated WSe 2 structures. Nat. Nanotechnol.
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288. A. Srivastava, M. Sidler, A.V. Allain, D.S. Lembke, A. Kis, A. Imamoglu, Optically active
quantum dots in monolayer WSe 2 . Nat. Nanotechnol. 10, 491–496 (2015)
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