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Autor:
M. Tuan Trinh, Jan Valenta, Alexander N. Poddubny, Antonio Capretti, Elinore Mld de Jong, Irina Yassievich, Tom Gregorkiewicz, Huub Rutjes
Publikováno v:
Light, Science & Applications
Light: Science & Applications, 7:17133. Nature Publishing Group
Light: Science & Applications, 7:17133. Nature Publishing Group
Increasing temperature is known to quench the excitonic emission of bulk silicon, which is due to thermally induced dissociation of excitons. Here, we demonstrate that the effect of temperature on the excitonic emission is reversed for quantum-confin
Autor:
Katia Shtyrkova, Neetesh Singh, Christopher Baiocco, Alfonso Ruocco, Patrick T. Callahan, Bill P.-P. Kuo, Nanxi Li, Stojan Radic, Ming Xin, Emir Salih Magden, Erich P. Ippen, Franz X. Kärtner, Diedrik Vermeulen, Michael R. Watts, Nicholas M. Fahrenkopf
Publikováno v:
Light, Science & Applications
Light 7(1), 17131 (2018). doi:10.1038/lsa.2017.131
Light 7(1), 17131 (2018). doi:10.1038/lsa.2017.131
Light 7(1), 17131 (2018). doi:10.1038/lsa.2017.131
Efficient complementary-metal-oxide-semiconductor-based nonlinear optical devices in the near infrared are in strong demand. Due to two-photon absorption in silicon, however, much nonlinear rese
Efficient complementary-metal-oxide-semiconductor-based nonlinear optical devices in the near infrared are in strong demand. Due to two-photon absorption in silicon, however, much nonlinear rese