Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Francesco Morichetti is active.

Publication


Featured researches published by Francesco Morichetti.


Silicon Photonics: From Fundamental Research to Manufacturing | 2018

Automatic hitless reconfiguration of silicon photonics microring filters (Conference Presentation)

Douglas Aguiar; Maziyar Milanizadeh; Emanuele Guglielmi; Francesco Zanetto; Francesco Morichetti; Andrea Melloni; M. Sampietro

Photonic integrated circuits (PICs) have been demonstrated as a promising technology to implement flexible and hitless reconfigurable devices for telecom, datacom and optical interconnect applications. However, the complexity scaling of such devices is raising novel needs related to their control systems, and the automatic calibration, reconfiguration and operation of these complex architectures both during manufacturing and in service is still an open issue. nnIn this contribution, we report our recent achievements on the automatic hitless tuning of a telecommunication-graded filter operating in the L band, fabricated on a commercial foundry Silicon Photonics (SiP) run. A novel channel labeling strategy is used to automatically identify the desired channel within a Dense Wavelength Division Multiplexing (DWDM) through a FPGA-embedded closed-loop control algorithm. nnThe photonic architecture consists of a hitless third order Micro Ring Resonator (MRR) filter with 8 nm Free Spectral Range (FSR), integrating transparent detectors (ContactLess Integrated Photonic Probes - CLIPP) as power monitors and thermooptic actuators. Transparent detectors enable to control the input/output port of the filter without introducing any loss to the WDM channel comb. Hitless operation is achieved through a pair of switchable Mach-Zehnder interferometers used as input/output couplers of the MRR filter. The fabricated device has a 3 dB bandwidth of 40.7 GHz and provides a through-port in-band isolation of 23 dB and a drop port isolation of 25 dB at 50 GHz spacing from the dropped channel. Hitless reconfiguration is achieved with more than 30 dB isolation during channel selection.nnThe automatic tuning and locking technique is based on the use of a pilot tone generated locally at the node site and applied as a low frequency (few kHz), small modulation index (< 8%), amplitude modulation on the channel to be added to the network. The effectiveness and robustness of the automatic controller for tuning and stabilization of the filter is demonstrated by showing that no significant bit-error rate (BER) degradation is observed in an adjacent channel while the filter is being reconfigured. In addition, the convergence of the algorithm is shown to require only few tens of iterations, each one requiring a few milliseconds. nnThe FPGA-embedded control technique together with the compactness provided by SiP meets the integration requirements for high capacity networks and pluggable modules. In addition, the filter unit can be cascaded with other units to realize a multichannel reconfigurable add-drop architecture operating on several wavelengths at the same time with complete independency.


Archive | 2010

ADVANCES IN SLOW AND FAST LIGHT III

T.F. Krauss; Liam O'Faolain; Sebastian A. Schulz; Daryl M. Beggs; Francesco Morichetti; Antonio Canciamilla; Matteo Torregiani; Andrea Melloni; Simon Mazoyer; P. Lalanne; Antonio Samarelli; Marc Sorel; Richard M. De La Rue

We study propagation losses in slow light photonic crystal waveguides and show that dispersion engineering can reduce the loss. We develop an improved understanding of why and how this occurs and develop an new approach to modeling these devices that provides new design insights.


Bragg Gratings, Photosensitivity, and Poling in Glass Waveguides | 2010

Cavity-Enhanced Photosensitivity in As 2 S 3 Chalcogenide Glass

Juejun Hu; Anu Agarwal; Lionel C. Kimerling; Francesco Morichetti; Andrea Melloni; Nathan Carlie; Kathleen Richardson

Cavity-enhanced photosensitivity of As2S3chalcogenide glass films is measured using planar micro-disk resonators. We determine the origin of such photosensitivity to be optical absorption arising from sub-gap defects.


Archive | 2004

Optical Device Based on a Three-Arm Mach-Zehnder Interferometer

Andrea Melloni; Francesco Morichetti


Archive | 2002

Four-wave-mixing based optical wavelength converter device

Andrea Melloni; Francesco Morichetti; Silvia M. Pietralunga; Mario Martinelli


Archive | 2013

Athermal Photonic Waveguide With Refractive Index Tuning

Anuradha M. Agarwal; Antonio Canciamilla; Francesco Morichetti; Stefano Grillanda; Lionel C. Kimerling; Andrea Melloni; Vivek Raghunathan; Vivek Singh


Advanced Photonics 2018 (BGPP, IPR, NP, NOMA, Sensors, Networks, SPPCom, SOF) | 2018

Ultra-High Efficient Thermal Tuning of Dielectric Optical Waveguides

Faisal Ahmed Memon; Francesco Morichetti; Andrea Melloni


Advanced Photonics 2018 (BGPP, IPR, NP, NOMA, Sensors, Networks, SPPCom, SOF) | 2018

Automatic Tuning of Hitless Add-Drop Filter Array Based on Microrings

Douglas Aguiar; Maziyar Milanizadeh; Emanuele Guglielmi; Francesco Zanetto; M. Sampietro; Francesco Morichetti; Andrea Melloni


Archive | 2012

Sonnenkonzentrator für photovoltaikanlagen

Giorgio Grasso; Francesco Morichetti; Silvia M. Pietralunga; Aldo Righetti; Maria Chiara Ubaldi


Archive | 2010

Resonant cavity-enhanced photosensitivity in As[subscript 2]S[subscript 3] chalcogenide glass at 1550 nm telecommunication wavelength

Juejun Hu; Matteo Torregiani; Francesco Morichetti; Nathan Carlie; Kathleen Richardson; Lionel C. Kimerling; Andrea Melloni; Anuradha M. Agarwal

Collaboration


Dive into the Francesco Morichetti's collaboration.

Top Co-Authors

Avatar

Lionel C. Kimerling

Massachusetts Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Andrea Melloni

Polytechnic University of Milan

View shared research outputs
Top Co-Authors

Avatar

Anuradha M. Agarwal

Massachusetts Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

Juejun Hu

Massachusetts Institute of Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge