Optical Fiber Communication Conference (OFC) 2022 2022
DOI: 10.1364/ofc.2022.th1d.6
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Automated Tuning for Silicon Photonic Filters

Abstract: An automatic monitor-based filter tuning technique for APF-based silicon photonic filters is presented. The proposed tuning approach calibrates the initial distorted filter response due to process variation by adjusting the locations of each pole and zero to reconfigure to different bandwidths and center wavelengths.

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Cited by 5 publications
(3 citation statements)
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“…The notch filter is designed by cascading MZI-based ring resonators each providing adequate rejection and independent center frequency control [12,23]. The value of the FSR is chosen to balance in-band loss and sweeping time to cover the frequency band, and quality factor.…”
Section: Jammer-reject Notch Filtermentioning
confidence: 99%
“…The notch filter is designed by cascading MZI-based ring resonators each providing adequate rejection and independent center frequency control [12,23]. The value of the FSR is chosen to balance in-band loss and sweeping time to cover the frequency band, and quality factor.…”
Section: Jammer-reject Notch Filtermentioning
confidence: 99%
“…However, the maximum FSR is limited by the minimum length (specifically the heater length of 320-um), thus 50-GHz FSR is chosen. The monitor response of the unit MZI-Ring is used for tuning and calibration [12,23]. [12,23].…”
Section: Channel-select (Image-reject) Filtermentioning
confidence: 99%
“…The monitor response of the unit MZI-Ring is used for tuning and calibration [12,23]. [12,23]. Furthermore, a high filter order is suitable for higher rejection but at the cost of higher in-band insertion loss, thus only a 4th-order filter is chosen.…”
Section: Channel-select (Image-reject) Filtermentioning
confidence: 99%