black and white bed linen

Tanguy FL

Welcome to my personal website, where I share my projects in applied mathematics, signal processing, and quantum physics. Explore research projects, mathematical concepts, and insights from my academic path.

My Background

Master’s Student at Mines Paris-PSL in Applied Mathematics, Signal Processing, Wave Physics

My Experiences

Short Term Scholar - University of Minnesota
February to August 2024

Real time motion correction for 7T MR Imaging and Spectroscopy. Physics based model for Eddy Current time response functions. Performance assessment on phantoms and humans subjects

R&D Intern - OuiHelp
August 2023 to January 2024

NLP models applied to the medico-social sector. Developed OCR and NLP APIs to replace human-madetime-consuming tasks

Research Intern - Observatoire de Paris
September to November 2022

Conception and design of a measurement setup at THz frequencies. Gaussian Beam simulation and field reconstruction algorithms. Data Visualisation tools for 3D phase and amplitude propagating field.

UMN logo
UMN logo
Ouihelp Logo
Ouihelp Logo
Observatoire de Paris logo
Observatoire de Paris logo
Mines Paris - PSL logo
Mines Paris - PSL logo
Mines Paris - PSL
Graduating in 2025

Top ranked French University. Major in Applied Mathematics and Signal Processing, minor in Quantum Physics and Light-Matter interactions.

Universidad Politécnica de Madrid
Spring Semester Exchange 2023

MIMO Telecommunications, Deep Learning for Acoustic Signals, RF Laboratory Sessions.

Lycée Hoche
Classe préparatoire 2019-2021

Highly intensive preparation for a competitive nation-wide exam. Ranked 36 out of 3700 candidates. Mathematics, Physics, Science of Engineering

Logo Universidad Politécnica de Madrid
Logo Universidad Politécnica de Madrid
Hoche Logo
Hoche Logo

Current Activities

PhD student at LKB

I am currently conducting research at the Laboratoire Kastler Brossel (LKB) on quantum-enhanced imaging techniques.

The team focuses on extending the capabilities of Spatial Mode Demultiplexing (SPADE), a method that enables super-resolution imaging beyond the classical diffraction limit.

My objective is to explore multi-parameter estimation in realistic conditions, incorporate machine learning and Bayesian approaches to optimize spatial mode selection and improve robustness against experimental imperfections.

Hermite Gauss demultiplexing illustration
Hermite Gauss demultiplexing illustration
Freelance Work

I work one day per week with Fresnel Alliance on software tasks related to space and telecommunications.

Tanguy FL

Welcome to my personal website, where I share my projects in applied mathematics, signal processing, and quantum physics. Explore research projects, mathematical concepts, and insights from my academic path.