Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Rasmus V. Jensen"'
Autor:
M. F. Yan, David W. Peckham, Patrick W. Wisk, Durgesh S. Vaidya, M. Stegmaier, Peter Ingo Borel, Benyuan Zhu, Robert Lingle, Alan McCurdy, Lufeng Leng, Bera Palsdottir, Tommy Geisler, David J. DiGiovanni, Rasmus V. Jensen
Publikováno v:
Journal of Lightwave Technology. 37:6072-6079
This paper describes the enabling fiber and amplifier technologies for ultra-long reach unrepeatered transmission submarine cable systems. The key enabling technologies include the large-area ultra-low attenuation fibers, high-efficient Remote Optica
Autor:
Robert Lingle, Rasmus V. Jensen, Bera Palsdottir, Tommy Geisler, M. Stegmaier, Peter Ingo Borel, David J. DiGiovanni, Benyuan Zhu
Publikováno v:
ECOC
Autor:
Rodrigo Amezcua-Correa, Roland Ryf, Juan Carlos Alvarado-Zacarias, Ton Koonen, Chigo Okonkwo, Yi Sun, Robert Lingle, Haoshuo Chen, Nicolas K. Fontaine, Lars Gruner-Nielsen, Roberto Alvarez-Aguirre, Rasmus V. Jensen, John van Weerdenburg
Publikováno v:
Journal of Lightwave Technology, 36(6):8252699, 1369-1374. IEEE/LEOS
We report on the multiplexing of 12 spatial and polarization channels and 120 wavelength channels in the C -band, each carrying 16 quadratic-amplitude modulation symbols at 30 GBd over graded-index few-mode fiber. A combination of multiple fiber spoo
Autor:
Man Yan, Peter Ingo Borel, David W. Peckham, Robert Lingle, Bera Palsdottir, Rasmus V. Jensen, David J. DiGiovanni, Tommy Geisler, M. Stegmaier, Durgesh S. Vaidya, Patrick W. Wisk, B. Zhu, H. Zhang
Publikováno v:
45th European Conference on Optical Communication (ECOC 2019).
Autor:
Kasyapa Balemarthy, David Braganza, Tommy Geisler, Bera Palsdottir, David W. Peckham, Alan McCurdy, Peter Ingo Borel, Robert Lingle, Man Yan, Poul Kristensen, Roman Shubochkin, Durgesh S. Vaidya, Benyuan Zhu, David J. DiGiovanni, Yi Sun, Rasmus V. Jensen
Publikováno v:
ECOC
It is possible to create advanced, manufacturable designs for both single- and multi-mode optical fibers that give significant performance improvements in transmission. This tutorial gives practical illustrations for both datacom and coherent long ha
Autor:
Man Yan, D. Vaidya, Peter Ingo Borel, David J. DiGiovanni, David W. Peckham, Patrick W. Wisk, Tommy Geisler, Xinli Jiang, Robert Lingle, B. Zhu, Rasmus V. Jensen
Publikováno v:
ECOC
We demonstrate unrepeatered transmission of 400Gb/s $(4\times 128Gb/s)$ over 557km and 100Gb/s over 590km distance with single fibre configuration using forward and backward ROPAs enabled by 2nd-order Raman pumping and large $A_{eff}$ ultra-low-loss
Autor:
J. Zhang, Jianjun Yu, Durgesh S. Vaidya, Man Yan, David J. DiGiovanni, Robert Lingle, Patrick W. Wisk, Tommy Geisler, David W. Peckham, Rasmus V. Jensen, Peter Ingo Borel, B. Zhu
Publikováno v:
ECOC
We demonstrate transmission of 78×256Gb/s PM-16QAM over 4800km, and 78×192Gb/s PDM-8QAM over 7200km with 100km span length at spectral-efficiency 6.0 and 4.5 b/Hz/s, respectively. This is achieved by ultra-large-A eff ultra-low-loss fibre using EDF
Autor:
Robert Lingle, Benyuan Zhu, Man Yan, Alan McCurdy, Rick Norris, K. Carlson, Bera Palsdottir, Yi Zou, P. Borel, Ole A. Levring, Rasmus V. Jensen, Alan A. Klein, David W. Peckham, Patrick Wisk, Durgesh S. Vaidya, Dennis J. Trevor
Publikováno v:
OFC
We will discuss design principles and properties of large effective area, low loss fibers for C+L band transmission. These fibers need to have excellent cabling properties from 1530 to 1610nm.
Autor:
S. U. Alam, Alan H. Gnauck, R. Ryf, J.K. Sahu, Yi Sun, Yongmin Jung, Xinli Jiang, Rasmus V. Jensen, Qiongyue Kang, Robert Lingle, David J. Richardson, Haoshuo Chen, Nicolas K. Fontaine, Lars Gruner-Nielsen
Publikováno v:
2015 European Conference on Optical Communication (ECOC).
We demonstrate mode-multiplexed transmission over all-fiber optically amplified spans of 215 km and 179 km for 3 and 6 spatial modes, respectively. The spans were amplified using two cladding-pumped few-mode fiber amplifiers. Refereed/Peer-reviewed
Publikováno v:
OFC
Scopus-Elsevier
Scopus-Elsevier
Design principles for low loss and control of mode coupling, fabrication results for DGD control, and characterization techniques are briefly reviewed. Experimental results for fibers supporting three or six spatial modes are presented.