Multitap microwave photonic filter with negative coefficients based on the inherent birefringence in a LiNbO3 phase modulator

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Abstract

A novel technique to implement a multitap microwave photonic filter with positive and negative coefficients based on the inherent birefringence in a LiNbO3 phase modulator is proposed and demonstrated. In the proposed filter, a microwave signal is applied to the phase modulator and an optical polarizer is connected at the output of the phase modulator to perform polarization interference and phase-modulation to intensity-modulation (PM-IM) conversion. Thanks to the inherent birefringence in the LiNbO3 crystal, a $\pi$ phase shift is obtained by adjusting the wavelength spacing between two adjacent wavelengths, which leads to the generation of a positive coefficient and a negative coefficient. An equivalent experiment is performed. Four-tap and six-tap microwave photonic filters with positive and negative coefficients are experimentally demonstrated. The reconfigurability of the four-tap and six-tap microwave photonic filters is also investigated. © 2013 IEEE.

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APA

Wang, M., & Yao, J. (2013). Multitap microwave photonic filter with negative coefficients based on the inherent birefringence in a LiNbO3 phase modulator. IEEE Photonics Journal, 5(3). https://doi.org/10.1109/JPHOT.2013.2265981

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