This is a space where I share reflections, insights, and ongoing learning on artificial intelligence, quantum computing, software development, and technology more broadly. Drawing on nearly thirty years of experience across telecommunications, networking, and AI, these are personal notes rather than corporate content — observations from someone who continues to find this field worth following closely.
About us
I have worked in technology for nearly thirty years. I started as a telecommunications engineer — a degree from Sapienza University of Rome, with early research years focused on optical networks and mobile telephony protocols — before moving progressively into different areas: networking and security, technology marketing, and, in recent years, artificial intelligence and quantum computing.
I spent almost twenty years at Cisco Systems, holding marketing and business development responsibilities for major European service providers. I later moved into applied AI, leading research and innovation projects and developing machine learning algorithms for finance and risk management. I currently work on artificial intelligence and quantum computing in a corporate setting, with a particular interest in the ethics of algorithms — a topic on which I have published several articles in scientific journals.
I am a CCIE (Cisco Certified Internetwork Expert) and ITIL certified. Alongside my professional activity, I continue to follow closely the evolution of artificial intelligence, quantum computing, and emerging technologies more broadly.
This blog was created to share reflections and insights on these subjects. To get in touch, you can find me on Linkedin.
Blog
A collection of notes, reflections, and explorations on artificial intelligence, quantum computing, and technology in general. Some posts dive into technical topics, others are more exploratory — thoughts on where these fields are heading and what catches my attention along the way.
Spotting the Flaw: A Quantum-Classical Experiment in Visual Anomaly Detection
Every bottling line eventually produces a bottle it shouldn’t: a hairline fracture, a chip along the rim, a smear of contamination on the glass. Catching such defects automatically is a deceptively hard problem, not because the flaws themselves are complex, but because they are rare. A line can run for hours before producing a single …
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Bell inequality on real quantum hardware
Image: CERN – https://home.cern/news/news/physics/fifty-years-bells-theorem We run a Bell test in the CHSH formulation on two real quantum platforms: the goal was not to demonstrate anything new, but to use a well-known experiment as a direct physical benchmark to understand how much a real quantum processor can preserve entangled correlations. This test could fit the purpose …
Main readings for quantum circuits simulations
The following references provide background on quantum noise, random circuits, and entanglement dynamics. The presented notes are inspired by these research directions but focus on a simplified, empirical description of noise sensitivity based on effective scaling variables. I found them all interesting and hope you will too. H. M. Wiseman and G. J. Milburn, Quantum …
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Contact Us
For questions, feedback, or simply to get in touch, feel free to reach out:
You can also find me on [LinkedIn].
