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Daniele Melati

Researcher at Université Paris-Saclay

Publications -  104
Citations -  1469

Daniele Melati is an academic researcher from Université Paris-Saclay. The author has contributed to research in topics: Photonic integrated circuit & Photonics. The author has an hindex of 17, co-authored 88 publications receiving 1136 citations. Previous affiliations of Daniele Melati include Instituto Politécnico Nacional & Polytechnic University of Milan.

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An introduction to InP-based generic integration technology

TL;DR: The paper explains the concept of generic photonic integration technology using the technology developed by the COBRA research institute of TU Eindhoven as an example, and it describes the current status and prospects of generic InP-based integration technology.
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Mapping the global design space of nanophotonic components using machine learning pattern recognition

TL;DR: A machine-learning-based approach to map and characterize the multi-parameter design space of nanophotonic components and reveals the interplay of the design parameters, highlighting performance and structural limitations, and inspiring new design ideas.
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Real photonic waveguides: guiding light through imperfections

TL;DR: In this paper, a comprehensive review on the extrinsic loss mechanisms occurring in optical waveguides, identifying the main origins of scattering loss and pointing out the relationships between the loss and the geometrical and physical parameters of the waveguide.
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Mapping the global design space of nanophotonic components using machine learning pattern recognition

TL;DR: In this article, a machine-learning-based approach is used to map and characterize the multi-parameter design space of nanophotonic components, revealing the interplay of the design parameters, highlighting performance and structural limitations.
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Reconfigurable photonic integrated mode (de)multiplexer for SDM fiber transmission.

TL;DR: In this paper, a photonic circuit for efficient mode multiplexing and demultiplexing in few-mode fibers is presented and demonstrated, where two 10 Gbit/s channels at the same wavelength and polarization are simultaneously transmitted over modes LP01 and LP11a of a fewmode fiber relying only on integrated mode MUX and DEMUX.