Edo
Waks
Jiang, Y. ., Pettit, R. M., Driesch, N. ., Pawlis, A. ., & Waks, E. . (2024). Cavity-Enhanced Single-Photon Emission from a Single Impurity-Bound Exciton in ZnSe. ACS Photonics, 11, 1103–1108. http://doi.org/10.1021/acsphotonics.3c01540 (Original work published February 2024)
Rahaman, M. H., Lee, C. ., Buyukkaya, M. A., Harper, S. ., Islam, F. ., & Waks, E. . (2024). Quality factor enhancement of InP nanobeam cavities using atomic layer deposition. In A. . Adibi, S.-Y. . Lin, & A. . Scherer (Eds.), Photonic and Phononic Properties of Engineered Nanostructures XIV (p. 67). SPIE. http://doi.org/10.1117/12.3000597 (Original work published March 2024)
Rahaman, M. H., Harper, S. ., Lee, C.-M. ., Kim, K.-Y. ., Buyukkaya, M. A., Patel, V. ., … Waks, E. . (2024). Efficient, Indistinguishable Telecom C-Band Photons using a Tapered Nanobeam Waveguide. ACS Photonics, 11, 2738–2744. http://doi.org/10.1021/acsphotonics.4c00625 (Original work published June 2024)
Purkayastha, P. ., Gallagher, S. ., Jiang, Y. ., Lee, C.-M. ., Shen, G. ., Ginger, D. ., & Waks, E. . (2024). Purcell Enhanced Emission and Saturable Absorption of Cavity-Coupled CsPbBr3 Quantum Dots. ACS Photonics, 11, 1638–1644. http://doi.org/10.1021/acsphotonics.3c01847 (Original work published March 2024)
Larocque, H. ., Vitullo, D. ., Buyukkaya, M. A., Sludds, A. ., Errando-Herranz, C. ., Papon, C. ., … Englund, D. . (2024). Tunable quantum emitters and coherent modulation on foundry integrated photonics. In M. . Hayduk & E. . Donkor (Eds.), Conference on Quantum Information Science, Sensing, and Computation XVI (p. 37). SPIE. http://doi.org/10.1117/12.3021136 (Original work published June 2024)
Zheng, X. ., & Waks, E. . (2024). A strongly interacting photonic quantum walk using single atom beam splitters. Phys. Rev. Research, 6(1), 13. http://doi.org/10.1103/PhysRevResearch.6.013245 (Original work published March 2024)
Zheng, X. ., Mehrabad, M. J., Vannucci, J. ., Li, K. ., Dutt, A. ., Hafezi, M. ., … Waks, E. . (2024). Dynamic control of 2D non-Hermitian photonic corner states in synthetic dimensions. ArXiv, 2402(14946). http://doi.org/10.48550/arXiv.2402.14946 (Original work published February 2024)
Yu, Y. ., Liu, S. ., Lee, C.-M. ., Michler, P. ., Reitzenstein, S. ., Srinivasan, K. ., … Liu, J. . (2023). Telecom-band quantum dot technologies for long-distance quantum networks. Nature Nanotechnology. http://doi.org/10.1038/s41565-023-01528-7 (Original work published December 2023)
Saha, U. ., Siverns, J. D., Hannegan, J. ., Prabhu, M. ., Quraishi, Q. ., Englund, D. ., & Waks, E. . (2023). Routing Single Photons from a Trapped Ion Using a Photonic Integrated Circuit. Physical Review Applied, 19(3). http://doi.org/10.1103/physrevapplied.19.034001 (Original work published March 2023)
Waks, E. ., Sridharan, D. ., & Vuckovic, J. . (2007). Quantum networking with quantum dots coupled to micro-cavities. (Y. . Arakawa, M. . Sasaki, & H. . Sotobayashi, Eds.), Quantum Communications Realized. SPIE. http://doi.org/10.1117/12.732259 (Original work published September 2007)