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  • 👋 Hi, I’m @ShaneGervais
  • 👀 I’m interested in Quantum optics, Quantum information and Computational physics
  • 🌱 I’m currently a masters student working on characterizing a polarisation state using weak measurement procedures
  • 💞️ I’m looking to collaborate on various scientific research projects.
  • 📫 How to reach me may reach me by email: [email protected]

Connect with me:

shanegervais shane-gervais shanegervais

Languages and Tools:

cplusplus docker git go gtk java linux matlab mysql pandas python qt rust scikit_learn seaborn

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 shanegervais

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Shane's Projects

accord-de-phase-ppktp icon accord-de-phase-ppktp

Calculs d'accord de phase dans cristal de periodically-poled potassium titanyl phosphate (PPKTP)

approxpi icon approxpi

Approximation of Pi using polygon technique in comparison with Eulers complex

declination-of-the-sun icon declination-of-the-sun

While the stars in our solar systems stays at a constant declination, our sun doesn't due to the tilt of the earths equatorial axis throughout the year. Resulting in winter solstice having longer night and the summer solstice having longer days. We've writen a short program to visualize the length of time of our days throughout the year at different locations on earth.

evolution-d-etats-vide-comprime icon evolution-d-etats-vide-comprime

Ce programme calcule l'évolution d'un état comprimé avec a = a*exp(-iωt) et a+ = a+*exp(iωt). Les calcules des Bra-Kets ont déjà été calculés donc on utilise le PNotebook pour simplifier le reste de nos calcule, trouver la valeur minimale de dp(t)dq(t) et enfin faire un graphique de cette évolution.

fokker-planck-equation-using-ftcs-method icon fokker-planck-equation-using-ftcs-method

In statistical mechanics the Fokker-Planck Equation (FPE) is a partial differential equation describing the dragged velocity of a probability density function with time. We will be investigating a numerical solution to the partial differential equation using numerical methods. The method used will be the forward time centered space method. Our ending goal would be to solve the FPE numerically in two dimensions.

fonction-photonique icon fonction-photonique

Des filières python qui effectuent des fonctions photoniques fréquentes sur les états de polarisation, filtres et miroirs.

gamma-absorption-lab icon gamma-absorption-lab

This is based on a lab experiment to find how the gamma absorption intensity decrease with different thickness's of aluminum sheets with different elements.

mach_zedner_faible icon mach_zedner_faible

Simulation numérique de la caractérisation d'état de polarisation d'un système d'optique quantique. Le but de cette simulation est de déterminer l'état de polarisation d'un laser diode pulsé avec la valeur faible; ce que démontre Jeff Lundeen.

mesure-faible icon mesure-faible

Programme qui calcule analytiquement la valeur faible d'un état polarisé avec un shift sur le dégrée temporel.

modeling-the-stirling-cycle icon modeling-the-stirling-cycle

This project has the goal to model the Stirling cycle from a realistic Stirling Engine given from Statistical and Thermal Physics Using Matlab by Anders Malthe-Sorenssen and Dag Kristian Dysthe, University of Oslo, Norway. We will be taking into account that the angle of the flywheel attached to the piston will be changing with time with respect to a differential equation given in the paper. After solving the differential, we will calculate how pressure changes with volume in a PV graph to display our results.

my-bash-scripts icon my-bash-scripts

A series of bash scripts I use to learn bash and automate my daily tasks

simple-model-fitting icon simple-model-fitting

Given a data set in an excel spreadsheet, our goal is to find a model that can best represent our data.

sleep icon sleep

A simple program to familiarize ourselves with C++. The program sleeps for given iterations of time (in seconds) during runtime.

spectrums-of-stellar-objects icon spectrums-of-stellar-objects

This class is to calculate and analyze the planck spectrum of stellar objects, as well by creating a Hertzsprung-Russell diagram.

uv-absorption-spectra-of-conjugated-system icon uv-absorption-spectra-of-conjugated-system

Based on a UV spectroscopie lab we will find the peaks of our dyes spectra's. Additionally will be conducting beers law to find the molar extinction coefficients of each spectra.

uv-spectroscopy-lab icon uv-spectroscopy-lab

Analysis of our UV data of Acetone in Water, Ethane and Hexane. Calculating the peak wavelengths for each solution, excitation energies, hydrogen bonding energies, concentrations, energy per mol of acetone in each solution and their molar extinction coefficients.

visibility-inteference icon visibility-inteference

Analytical and numerical predictions for the visibility/contrast of a pulsed laser in a interferometer undergoing a weak measurement.

wilks_points_analysis icon wilks_points_analysis

In this short project we will be analyzing the Wilks formula which measures ones strength based on there bodyweight, weight lifted and sexe. Our goal is to analyze the differences between the Wilks formula pre2020 and post for female and male athletes.

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