Tunable negative-tap photonic microwave filter based on a cladding-mode coupler and an optically injected laser of large detuning
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review
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Detail(s)
Original language | English |
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Pages (from-to) | 12045-12052 |
Journal / Publication | Optics Express |
Volume | 19 |
Issue number | 13 |
Publication status | Published - 20 Jun 2011 |
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Abstract
A tunable negative-tap photonic microwave filter using a cladding-mode coupler together with optical injection locking of large wavelength detuning is demonstrated. Continuous and precise tunability of the filter is realized by physically sliding a pair of bare fibers inside the cladding-mode coupler. Signal inversion for the negative tap is achieved by optical injection locking of a single-mode semiconductor laser. To couple light into and out of the cladding-mode coupler, a pair of matching long-period fiber gratings is employed. The large bandwidth of the gratings requires injection locking of an exceptionally large wavelength detuning that has never been demonstrated before. Experimentally, injection locking with wavelength detuning as large as 27 nm was achieved, which corresponded to locking the 36-th side mode. Microwave filtering with a free-spectral range tunable from 88.6 MHz to 1.57 GHz and a notch depth larger than 35 dB was obtained. © 2011 Optical Society of America.
Citation Format(s)
Tunable negative-tap photonic microwave filter based on a cladding-mode coupler and an optically injected laser of large detuning. / Chan, Sze-Chun; Liu, Qing; Wang, Zhu et al.
In: Optics Express, Vol. 19, No. 13, 20.06.2011, p. 12045-12052.
In: Optics Express, Vol. 19, No. 13, 20.06.2011, p. 12045-12052.
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review