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Denoising a stationary process (Xi)i−ˆâ„¤ corrupted by additive white Gaussian noise (Zi)i−ˆâ„¤, i.e., recovering Xn from Yn = Xn + Zn, is a classic and fundamental problem in information theory an

In the recent past, optical transparency -and more specifically the possible migration of incumbent opaque optical network towards optical transparency- have been intensively discussed and have dra

Chip-scale OCT has the potential to enable non-invasive and continuous sensing of our surrounding environment and internal physiology.

As one indispensable use case for the 5G wireless systems on the roadmap, ultra-reliable and low latency communications (URLLC) is a crucial requirement for the critical applications such as indust

In principle, optical phase-sensitive amplifiers are known to be capable of realizing noiseless amplification, as well as improving the signal-to-noise-ratio of optical links by 3 dB compared to co

The advent of programmability into data plane devices introduced variability in the packet processing delays, which depends on the pipeline complexity.

WDM has been generally proposed to groom wavelengths for transport applications.

This paper presents enhancements for lowering the handover interruption time in future wireless networks.

Thermal design power trends and power densities for present and future single-core microprocessors are investigated. These trends are derived based on Moore's law and scaling theory.