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AlvaroMenduina/README.md

Hi, welcome to Alvaro's GitHub! ๐Ÿ‘‹

My name is Alvaro Menduina-Fernandez and I'm an Astrophysics DPhil student at the University of Oxford. I'm working on the HARMONI instrument, the Integral Field Spectrograph for the European Extremely Large Telescope E-ELT.

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Quick Bio

I'm from Madrid, Spain and I'm interested in all things Space. After completing my BSc in Aerospace Engineering, I moved to the Netherlands for my MSc in Aerospace Engineering (Space Flight track) at TU Delft. I did an internship and my MSc Thesis at OHB Munich, developing software for the design of space optical instruments with freeform optics.

In 2017, I moved from satellites in Space looking down on Earth, to telescopes on Earth looking into Space when I began my DPhil in Astrophysics at Oxford ๐Ÿ‡ฌ๐Ÿ‡ง. Now on my final year, I've spent the last 3+ years researching how to calibrate Non-Common Path Aberrations (NCPA) for instruments like HARMONI.

What do I use GitHub for?

There are many aspects of my DPhil Thesis that involve coding, so I spend most of my times pushing commits to GitHub. What keeps me busy?

  • Machine Learning: a big part of my research focuses on developing Machine Learning techniques for the calibration of NCPA. Find more about it in my Repo.
  • End-to-End Model Simulations: Within the HARMONI project, I'm in charge of developing a Python package to analyse the performance of End-to-End Models of the HARMONI instrument. These are optical models of the complete instrument, which I use to evaluate the performance and prove that HARMONI will work. You can find more about this in my Repo.
  • Data Reduction: I'm currently running an experiment with an optical bench that generates lots of exciting data. [COMING SOON]

Alvaro's GitHub Stats

How to learn more and get in touch

If you want to know more about me and my research:

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  1. ZERN ZERN Public

    Python package for fast evaluation of Zernike polynomials

    Python 12 4

  2. Jupyter_Notebooks Jupyter_Notebooks Public

    This is a collection of Jupyter Notebooks for teaching and outreach purposes

    Jupyter Notebook 10 3

  3. HARMONI HARMONI Public

    HARMONI POP simulations

    Python 1

  4. E2E E2E Public

    Performance analysis simulations for the HARMONI End-to-End Model.

    Python

  5. NCPA NCPA Public

    Calibration of Non Common Path Aberrations

    Python 1

  6. POP_slicer POP_slicer Public

    Python simulations of Physical Optics Propagation (POP) for Image Slicers in Integral Field Spectroscopy

    Python 2