There has been considerable interest over the last several years in convenient sources of THz radiation.
We report the first single-channel subcarrier-based optical transmission of 1 Gb/s data over 1 km of standard 62.5 micron-core graded-index multimode fiber.
The ability to produce a high-performance monolithic CMOS photoreceiver, including the photodetector, could enable greater use of optics in short-distance communication systems.
We have demonstrated homodyne detection of 1 Gb/s pilot-carrier BPSK optical signals using phaselocked 1.5microns external-cavity semiconductor lasers.
We have demonstrated zero-IF DPSK coherent optical detection at 1 Gb/s without the use of multiple receivers and special optical couplers.
This paper presents the use and benefits of Design for Assemby (DFA) and computer simulation techniques in the design process of a new 1 kVA uninterruptible power supply (UPS).
This paper focuses on the application of a 1 Mb/s Ethernet LAN (i.e. IEEE 802.3 1BASE5) for SONET intra-site DCC message distribution.
A recent report of 1 mu s all-optical delay using silicon convertor elements in the 1550-nm band is analyzed. (C) 2009 Optical Society of America
We demonstrate six-channel, 160-Gb/s WDM transmission over twenty 100-km spans of non-zero-dispersion fiber, with a spectral efficiency of 0.53 b/s/Hz.
We demonstrate six-channel, 160-Gb/s WDM transmission over twenty 100-km spans of non-zero-dispersion fiber, with a spectral efficiency of 0.53 b/s/Hz.
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