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pro vyhledávání: '"Hoffman, Timothy B."'
Autor:
Hoffman, Timothy B.
Doctor of Philosophy
Department of Chemical Engineering
James H. Edgar
Hexagonal boron nitride (hBN) is a wide bandgap III-V semiconductor that has seen new interest due to the development of other III-V LED devices and the advent of g
Department of Chemical Engineering
James H. Edgar
Hexagonal boron nitride (hBN) is a wide bandgap III-V semiconductor that has seen new interest due to the development of other III-V LED devices and the advent of g
Externí odkaz:
http://hdl.handle.net/2097/32797
Autor:
Xu, Zai-Quan, Elbadawi, Christopher, Tran, Toan Trong, Kianinia, Mehran, Li, Xiuling, Liu, Daobin, Hoffman, Timothy B., Nguyen, Minh, Kim, Sejeong, Edgar, James H., Wu, Xiaojun, Song, Li, Ali, Sajid, Ford, Mike, Toth, Milos, Aharonovich, Igor
Artificial atomic systems in solids are becoming increasingly important building blocks in quantum information processing and scalable quantum nanophotonic networks. Yet, synthesis of color centers that act as single photon emitters which are suitabl
Externí odkaz:
http://arxiv.org/abs/1710.07010
Autor:
Xu, Zai-Quan, Elbadawi, Christopher, Tran, Toan Trong, Kianinia, Mehran, Hoffman, Timothy B., Edgar, James H., Toth, Milos, Aharonovich, Igor
Artificial atomic systems in solids such as single photon emitters are becoming increasingly important building blocks in quantum information processing and scalable quantum nanophotonic networks. Here, we report on a controllable way to engineer emi
Externí odkaz:
http://arxiv.org/abs/1704.05154
Akademický článek
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