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In the next generation of mobile network, 5G, mm-wave (mmW) communication is considered one of the main disruptive technologies to increase data rates and improve spectrum efficiency.

A systematized knowledge of defects in device microstructures has proven to be highly beneficial in improving materials and processes for advanced VLSI circuits.

A semiconductor saturable absorber based on a heavy-ion-irradiated quantum well vertical cavity is implemented in a 10Gbitis RZ loop transmission.

Buildings present a hostile environment for radio communications, with in-building radio propagation difficult to predict and continuously changing.

Multiple-input multiple-output (MIMO) technology has been proposed for the high speed downlink packet access (HSDPA) extension in the 3GPP mobile wireless standard [1] to achieve high data throughp

Multiple-input multiple-output (MIMO) technology has been proposed for the high speed downlink packet access (HSDPA) extension to the 3GPP mobile wireless standard to achieve high data throughput w

We study the impact of the linear coupling length and the number of cores on the nonlinear benefit of the coupled-core multicore fiber having up to 19 cores.

We studied the system benefits of applying dispersion pre-compensation implemented using programmable DAC, on the performance of 32.5 Gbaud root-raised-cosine pulse-shaped PDM-WDM BPSK, QPSK, and 1

We demonstrate, over a NZDSF link, that the system benefits provided by the temporal interleaving of polarization tributaries of 100 Gb/s coherent RZ-PDM-QPSK data depend on the WDM system configur

This paper documents the results of a system level investigation considering different antenna concepts when applying power control in UTRA FDD (UMTS Terrestrial Radio Access, Frequency Division Du