We experimentally propose and demonstrate how to double the capacity per wavelength in short distance data center interconnect fiber links by polarization multiplexing two pulse-amplitude modulation streams and by using a very compact silicon photonic polarization rotator driven by an algorithm implemented in a low-speed digital signal processing platform, avoiding more complex coherent and/or Stokes receiver structures. Tackling up to 100 rad/s, the system gives automatic stabilization against polarization fluctuations. We also report on the experimentally measured evolution of the state of polarization in an installed data center link.
Proof of Concept of Polarization-Multiplexed PAM Using a Compact Si-Ph Device / Nespola, A.; Franco, G.; Forghieri, F.; Traverso, M.; Anderson, S.; Webster, M.; Gaudino, R.. - In: IEEE PHOTONICS TECHNOLOGY LETTERS. - ISSN 1041-1135. - STAMPA. - 31:1(2019), pp. 62-65. [10.1109/LPT.2018.2882888]
Proof of Concept of Polarization-Multiplexed PAM Using a Compact Si-Ph Device
Gaudino, R.
2019
Abstract
We experimentally propose and demonstrate how to double the capacity per wavelength in short distance data center interconnect fiber links by polarization multiplexing two pulse-amplitude modulation streams and by using a very compact silicon photonic polarization rotator driven by an algorithm implemented in a low-speed digital signal processing platform, avoiding more complex coherent and/or Stokes receiver structures. Tackling up to 100 rad/s, the system gives automatic stabilization against polarization fluctuations. We also report on the experimentally measured evolution of the state of polarization in an installed data center link.File | Dimensione | Formato | |
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PTL_2018_PM_PAM_last_internal_version.pdf
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https://hdl.handle.net/11583/2728377
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