bandwidth scaling
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2021 ◽  
Author(s):  
David Moss

Abstract We demonstrate high-resolution photonic RF filters using an RF bandwidth scaling approach based on integrated Kerr optical micro-combs. By employing both an active nonlinear micro-ring resonator (MRR) as a high-quality micro-comb source and a passive high-Q MRR to slice the shaped comb, a large RF instantaneous bandwidth of 4.64 GHz and a high resolution of 117 MHz are achieved, together with a broad RF operation band covering 3.28 to 19.4 GHz (L to Ku bands) using thermal tuning. We achieve programmable RF transfer functions including binary-coded notch filters and RF equalizing filters with reconfigurable slopes. Our approach is an attractive solution for high performance RF spectral shaping with high performance and flexibility.


2021 ◽  
Author(s):  
David Moss

Abstract Integrated Kerr microcombs are emerging as a powerful tool as sources of multiple wavelength channels for photonic RF and microwave signal processing mainly in the context of transversal filters. They offer a compact device footprint, very high versatility, large numbers of wavelengths, and wide Nyquist bands. Here, we present our recent progress on Kerr microcomb-based photonic RF and microwave reconfigurable filters, based both on transversal filter methods and on RF to optical bandwidth scaling. We compare and contrast results achieved with wide comb spacing combs (200GHz) with more finely spaced (49GHz) microcombs. The strong potential of optical micro-combs for RF photonics applications in terms of functions and integrability is also discussed.


Author(s):  
Nashid Shahriar ◽  
Mubeen Zulfiqar ◽  
Shihabur Rahman Chowdhury ◽  
Sepehr Taeb ◽  
Raouf Boutaba ◽  
...  

2020 ◽  
Author(s):  
David Moss

We present our recent progress on RF applications based on integrated Kerr micro-combs, including a broadband photonic microwave mixer, adaptive photonic RF filters with 80 taps, and photonic RF filters implemented via RF bandwidth scaling methods.


2020 ◽  
Author(s):  
David Moss

Integrated Kerr microcombs are emerging as a powerful tool as sources of multiple wavelength channels for photonic RF and microwave signal processing mainly in the context of transversal filters. They offer a compact device footprint, very high versatility, large numbers of wavelengths, and wide Nyquist bands. Here, we review recent progress on Kerr microcomb-based photonic RF and microwave reconfigurable filters, based both on transversal filter methods and on RF to optical bandwidth scaling. We compare and contrast results achieved with wide comb spacing combs (200GHz) with more finely spaced (49GHz) microcombs. The strong potential of optical micro-combs for RF photonics applications in terms of functions and integrability is also discussed.


OSA Continuum ◽  
2020 ◽  
Vol 3 (4) ◽  
pp. 921
Author(s):  
K. P. Nagarjun ◽  
Roopa Prakash ◽  
B. S. Vikram ◽  
Shilpi Arora ◽  
Vadivukkarasi Jeyaselvan ◽  
...  

2020 ◽  
Author(s):  
David Moss ◽  
mengxi tan ◽  
xingyuan xu ◽  
Jiayang Wu ◽  
Roberto Morandotti ◽  
...  

<p><b>Integrated Kerr microcombs are emerging as a powerful tool as sources of multiple wavelength channels for photonic RF and microwave signal processing mainly in the context of transversal filters. They offer a compact device footprint, very high versatility, large numbers of wavelengths, and wide Nyquist bands. Here, we review recent progress on Kerr microcomb-based photonic RF and microwave reconfigurable filters, based both on transversal filter methods and on RF to optical bandwidth scaling. We compare and contrast results achieved with wide comb spacing combs (200GHz) with more finely spaced (49GHz) microcombs. The strong potential of optical micro-combs for RF photonics applications in terms of functions and integrability is also discussed. </b></p> <p><a><b><i>Index Terms</i>—Microwave photonics, micro-ring resonators.</b></a></p>


2020 ◽  
Author(s):  
David Moss ◽  
mengxi tan ◽  
xingyuan xu ◽  
Jiayang Wu ◽  
Roberto Morandotti ◽  
...  

<p><b>Integrated Kerr microcombs are emerging as a powerful tool as sources of multiple wavelength channels for photonic RF and microwave signal processing mainly in the context of transversal filters. They offer a compact device footprint, very high versatility, large numbers of wavelengths, and wide Nyquist bands. Here, we review recent progress on Kerr microcomb-based photonic RF and microwave reconfigurable filters, based both on transversal filter methods and on RF to optical bandwidth scaling. We compare and contrast results achieved with wide comb spacing combs (200GHz) with more finely spaced (49GHz) microcombs. The strong potential of optical micro-combs for RF photonics applications in terms of functions and integrability is also discussed. </b></p> <p><a><b><i>Index Terms</i>—Microwave photonics, micro-ring resonators.</b></a></p>


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