Low-loss 1 × 256 optical power splitter
Liang‐Liang Wang, Bingli Sun, Jiashun Zhang, Junming An, Jianguang Li, Xiaojie Yin, Jun Chen, Xiasen Chang, Yuanda Wu
Abstract
Liang‐Liang Wang, Bingli Sun, Jiashun Zhang, Junming An, Jianguang Li, Xiaojie Yin, Jun Chen, Xiasen Chang, Yuanda Wu
Abstract
A low-loss 1 × 256 optical power splitter is designed and fabricated using silica-based planar lightwave circuit technology on a 6-in. quartz substrate. The measured results show that the insertion loss, uniformity, and wavelength-dependence loss (WDL) of a 1 × 256 splitter are <26.2, 1.97, and 1.83 dB, respectively, in the wavelength range from 1.26 to 1.63 μm. The insertion loss, uniformity, and WDL of a 1 × 256 splitter are <25.62, 1.33, and 1.03 dB, respectively, in the normal communication wavelength range from 1.31 to 1.55μm. The polarization dependence loss is <0.16 dB in the wavelengths of 1.31 and 1.55 μm.
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A low-loss 1 × 256 optical power splitter is designed and fabricated using silica-based planar lightwave circuit technology on a 6-in. quartz substrate. The measured results show that the insertion loss, uniformity, and wavelength-dependence loss (WDL) of a 1 × 256 splitter are <26.2, 1.97, and 1.83 dB, respectively, in the wavelength range from 1.26 to 1.63 μm. The insertion loss, uniformity, and WDL of a 1 × 256 splitter are <25.62, 1.33, and 1.03 dB, respectively, in the normal communication wavelength range from 1.31 to 1.55μm. The polarization dependence loss is <0.16 dB in the wavelengths of 1.31 and 1.55 μm.
Key concepts: Insertion loss, Splitter, Materials science, Wavelength, Optics, Optical power, Fiber optic splitter, Planar