Mukherjee, C.; Deng, M.; Nodjiadjim, V.; Riet, M.; Mismer, C.; Guendouz, D.; Caillaud, C.; Bertin, H.; Vaissiere, N.; Luisier, M.;
et al. Towards Monolithic Indium Phosphide (InP)-Based Electronic Photonic Technologies for beyond 5G Communication Systems. Appl. Sci. 2021, 11, 2393.
https://doi.org/10.3390/app11052393
AMA Style
Mukherjee C, Deng M, Nodjiadjim V, Riet M, Mismer C, Guendouz D, Caillaud C, Bertin H, Vaissiere N, Luisier M,
et al. Towards Monolithic Indium Phosphide (InP)-Based Electronic Photonic Technologies for beyond 5G Communication Systems. Applied Sciences. 2021; 11(5):2393.
https://doi.org/10.3390/app11052393
Chicago/Turabian Style
Mukherjee, Chhandak, Marina Deng, Virginie Nodjiadjim, Muriel Riet, Colin Mismer, Djeber Guendouz, Christophe Caillaud, Hervé Bertin, Nicolas Vaissiere, Mathieu Luisier,
and et al. 2021. "Towards Monolithic Indium Phosphide (InP)-Based Electronic Photonic Technologies for beyond 5G Communication Systems" Applied Sciences 11, no. 5: 2393.
https://doi.org/10.3390/app11052393
APA Style
Mukherjee, C., Deng, M., Nodjiadjim, V., Riet, M., Mismer, C., Guendouz, D., Caillaud, C., Bertin, H., Vaissiere, N., Luisier, M., Wen, X., De Matos, M., Mounaix, P., & Maneux, C.
(2021). Towards Monolithic Indium Phosphide (InP)-Based Electronic Photonic Technologies for beyond 5G Communication Systems. Applied Sciences, 11(5), 2393.
https://doi.org/10.3390/app11052393