Zobrazeno 1 - 6
of 6
pro vyhledávání: '"L. K. Oxenløwe"'
Publikováno v:
APL Photonics, Vol 1, Iss 8, Pp 081301-081301-6 (2016)
To accommodate the ever increasing wireless traffic in the access networks, considerable efforts have been recently invested in developing photonics-assisted wireless communication systems with very high data rates. Superior to photonic millimeter-wa
Externí odkaz:
https://doaj.org/article/43a2d349564f46a79eb95174a2390dfd
Autor:
J. Azaña, L. K. Oxenløwe, E. Palushani, R. Slavík, M. Galili, H. C. H. Mulvad, H. Hu, Y. Park, A. T. Clausen, P. Jeppesen
Publikováno v:
International Journal of Optics, Vol 2012 (2012)
We review recent work on all-fiber (long-period fiber grating) devices for optical pulse shaping, particularly flat-top pulse generation, down to the subpicosecond range and their application for nonlinear switching (demultiplexing) of optical time-d
Externí odkaz:
https://doaj.org/article/25e842c4d86b42608f6bac046e1f2939
Autor:
L. K. Oxenløwe, M. Galili, H. C. Hansen Mulvad, H. Hu, J. L. Areal, E. Palushani, H. Ji, A. T. Clausen, P. Jeppesen
Publikováno v:
International Journal of Optics, Vol 2012 (2012)
We review recent experimental demonstrations of Tbaud optical signal processing. In particular, we describe a successful 1.28 Tbit/s serial data generation based on single polarization 1.28 Tbaud symbol rate pulses with binary data modulation (OOK) a
Externí odkaz:
https://doaj.org/article/98c96590df3d4ab29b91cc7076e7831b
Publikováno v:
Optical Fiber Communication Conference (OFC) 2023.
We demonstrate a PAM8 WDM-PON transmission using a single time lens source. Geometric shaping is used to minimize the impact of power-dependent noise. 28×1.5 Gb/s WDM signals are transmitted over 26 km with BER below 3.8×10 − 3.
Autor:
A. N. Kamel, H. E. Dirani, M. Casale, S. Kerdiles, C. Socquet-Clerc, M. Pu, L. K. Oxenløwe, K. Yvind, J. Lægsgaard, C. Sciancalepore
Publikováno v:
Conference on Lasers and Electro-Optics.
Autor:
A. A. Jørgensen, D. Kong, M. R. Henriksen, F. Klejs, Z. Ye, Ò. B. Helgason, H. E. Hansen, H. Hu, M. Yankov, S. Forchhammer, P. Andrekson, A. Larsson, M. Karlsson, J. Schröder, Y. Sasaki, K. Aikawa, J. W. Thomsen, T. Morioka, M. Galili, V. Torres-Company, L. K. Oxenløwe
Publikováno v:
Nature Photonics
Jorgensen, A A, Kong, D, Henriksen, M R, Klejs, F, Ye, Z, Helgason, O B, Hansen, H E, Hu, H, Yankov, M, Forchhammer, S, Andrekson, P, Larsson, A, Karlsson, M, Schroder, J, Sasaki, Y, Aikawa, K, Thomsen, J W, Morioka, T, Galili, M, Torres-Company, V & Oxenlowe, L K 2022, ' Petabit-per-second data transmission using a chip-scale microcomb ring resonator source ', Nature Photonics, vol. 16, pp. 798-802 . https://doi.org/10.1038/s41566-022-01082-z
Jorgensen, A A, Kong, D, Henriksen, M R, Klejs, F, Ye, Z, Helgason, O B, Hansen, H E, Hu, H, Yankov, M, Forchhammer, S, Andrekson, P, Larsson, A, Karlsson, M, Schroder, J, Sasaki, Y, Aikawa, K, Thomsen, J W, Morioka, T, Galili, M, Torres-Company, V & Oxenlowe, L K 2022, ' Petabit-per-second data transmission using a chip-scale microcomb ring resonator source ', Nature Photonics, vol. 16, pp. 798-802 . https://doi.org/10.1038/s41566-022-01082-z
Optical fibre communication is the backbone of the internet. As essential core technologies are approaching their limits of size, speed and energy-efficiency, there is a need for new technologies that offer further scaling of data transmission capaci