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A 5 × 200 Gbps microring modulator silicon chip empowered by two-segment Z-shape junctions. [PDF]
Yuan Y +7 more
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Chip-integrated quantum signature network over 200 km. [PDF]
Du Y +9 more
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Tbps wide-field parallel optical wireless communications based on a metasurface beam splitter. [PDF]
Wu Y +11 more
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Multi-Wavelength Narrow-Spacing Laser Frequency Stabilization Technology Based on Fabry-Perot Etalon. [PDF]
Wang J +7 more
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A Long-Range Distributed Antenna Method Based on Microwave-Photonics Frequency Synchronization. [PDF]
Teng H +8 more
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Reconfigurable entanglement distribution network based on pump management of a spontaneous four-wave mixing source. [PDF]
Liu J +10 more
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Entangled photon pair generation in an integrated SiC platform. [PDF]
Rahmouni A +7 more
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Analysis of dense wavelength division multiplexed passive optical network (DWDM-PON)
2017 International Conference on Communication and Signal Processing (ICCSP), 2017The 32 channels dense wavelength division multiplexing passive optical network (DWDM-PON) link is designed with the reach of 40km and 1:32 passive power splitter. A downstream wavelength modulated at the peak data rate of 10Gb/s and each upstream wavelength modulated at the rate of 2.5Gb/s.
Vivek Kachhatiya, Shanthi Prince
exaly +2 more sources
2016 International Conference on Communication and Signal Processing (ICCSP), 2016
The wavelength division multiplexed and dense wavelength division multiplexed passive optical network (WDM-DWDM-PON) is designed and simulated to serve as long reach passive optical network (LR-PON). WDM-DWDM-PON network is simulated and analyzed upto the fiber reach of 100Km with and without dispersion compensation techniques.
Vivek Kachhatiya, Shanthi Prince
exaly +2 more sources
The wavelength division multiplexed and dense wavelength division multiplexed passive optical network (WDM-DWDM-PON) is designed and simulated to serve as long reach passive optical network (LR-PON). WDM-DWDM-PON network is simulated and analyzed upto the fiber reach of 100Km with and without dispersion compensation techniques.
Vivek Kachhatiya, Shanthi Prince
exaly +2 more sources

