Continuously tunable and highly reconfigurable multiband RF filter
View Patent ↗Various examples are provided for highly reconfigurable multiband radio frequency (RF) filters. The multiband RF filters can be continuously tunable. In one example, a multiband RF filter includes a Lyot loop filter that can generate an optical comb using an input optical signal from a tunable Mach-Zehnder interferometer (MZI), a birefringent device, and a polarization rotation angle of a polarization controller. The tunable MZI can include a tunable delay line that can adjust comb spacing of the optical comb. In another example, a multiband RF filter includes a second MZI in series with a first MZI. The second MZI can generate a second tunable output signal from a first tunable output signal from the first MZI. In another example, the multiband RF filter can include a third MZI in series with the second MZI. The third MZI can generate a third tunable output signal from the second tunable output signal.
1. A multiband radio frequency (RF) filter, comprising:
a Lyot loop filter comprising a tunable birefringence loop comprising a circulator, a birefringent device, and a polarization controller (PC), the Lyot loop filter configured to generate an optical comb based at least in part upon an input optical signal, the birefringent device, and a polarization rotation angle of the PC; and
a tunable Mach-Zehnder interferometer (MZI) providing the input optical signal to the Lyot loop filter, the tunable MZI comprising a tunable delay line configured to adjust comb spacing of the optical comb.
2. The multiband RF filter of claim 1 , wherein the tunable MZI comprises a tunable coupler coupled to first and second branches of the tunable MZI, the first branch including a tunable delay line and the second branch comprising a fixed delay line.
3. The multiband RF filter of claim 2 , wherein the tunable coupler is configured to continuously adjust a power ratio between the first and second branches of the tunable MZI to dynamically tune passband amplitude.
4. The multiband RF filter of claim 2 , wherein the tunable MZI comprises a coupler can that combines outputs of the first and second branches for interference.
5. The multiband RF filter of claim 1 , wherein the birefringent device comprises a length of polarization maintaining fiber (PMF), and the PC is coupled to a distal end of the PMF via the circulator.
6. The multiband RF filter of claim 5 , wherein the PC is configured to adjust the polarization rotation angle in a range from 0° to 90°.
7. The multiband RF filter of claim 5 , wherein the input optical signal is provided to a proximal end of the PMF via a loop coupling circulator of the Lyot loop filter.
8. The multiband RF filter of claim 1 , wherein the Lyot loop filter comprises a second tunable birefringence loop comprising a second circulator and a second PC, the second tunable birefringence loop coupled in series by a second loop coupling circulator.
9. The multiband RF filter of claim 8 , wherein the second tunable birefringence loop comprises a second PMF, and the second PC is coupled to a distal end of the second PMF via the second circulator.
10. The multiband RF filter of claim 8 , wherein an output from the tunable birefringence loop is provided to a proximal end of the second PMF via the second loop coupling circulator.
11. The multiband RF filter of claim 10 , wherein the output from the tunable birefringence loop is provided to the proximal end of the second PMF via a third PC.
12. The multiband RF filter of claim 1 , comprising a phase modulator (PM) configured to generate a modulated tap signal by modulating the optical comb by a RF input signal.
13. The RF filter of claim 12 , comprising a photo-detector (PD) configured to generate a RF output signal based upon the modulated tap signal.
14. The RF filter of claim 13 , comprising a piece of dispersion compensating fiber (DCF) between the PM and the PD to provide a linear delay for wavelengths of the modulated tap signal.
15. A multiband radio frequency (RF) filter, comprising:
a first tunable Mach-Zehnder interferometer (MZI), the first tunable MZI configured to generate a first tunable output signal from an input signal, the first tunable MZI comprising a tunable delay line configured to adjust comb spacing of the first tunable output signal; and
a second tunable MZI in series with the first MZI, the second tunable MZI configured to generate a second tunable output signal from the first tunable output signal from the first tunable MZI, the second tunable MZI comprising a tunable delay line configured to adjust comb spacing of the second tunable output signal.
16. The multiband RF filter of claim 15 , wherein the first and second tunable MZIs comprise a tunable coupler coupled to first and second branches of that tunable MZI, the first branch including a tunable delay line and the second branch comprising a fixed delay line.
17. The multiband RF filter of claim 16 , wherein the first and second tunable MZIs comprise a second tunable coupler can that combines outputs of the first and second branches for interference.
18. The multiband RF filter of claim 15 , comprising a third MZI in series with the second tunable MZI, the third MZI configured to generate a third tunable output signal from the second tunable output signal from the second tunable MZI, the third MZI comprising a tunable delay line configured to adjust comb spacing of the third tunable output signal.
19. The multiband RF filter of claim 18 , comprising an electro-optic modulator (EOM) configured to generate a modulated tap signal by modulating the first tunable output signal, the second tunable output signal or the third tunable output signal by a RF input signal.
20. The multiband RF filter of claim 19 , comprising a photo-detector (PD) configured to generate a RF output signal based upon the modulated tap signal.