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Compulsively curious
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Compulsively curious

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nondairyneutrino/README.md

Big Science on Big Computers

I love doing big science on big computers. That's why my open-source academic research focuses on using techniques from high-performance computing, such as GPU and distributed computing, to implement parallel-in-time integration methods, like the Parareal, PFASST, and MGRIT algorithms, to model extremely-long-term physics. I do so primarily using the Juila language, though I aim to incorporate more explicit use of CUDA, Fortran, and C. This work currently takes the form of PararealGPU.jl.

More specifically, my current interest is in the momentum distribution of spontaneously created massless, spin-0 quasi-particles in analog (3+1)-dimensional inflationary cosmologies arising from the phase-dynamics of Bose-Einstein condensates.

Previous research includes computationally investigating the role of microscopic molecular structure (quadrupolar) in emergent quantum many-body phenomena of a Bose-Einstein condensate of rigid-rotor molecules. Spoilers: there's a second order transition between the uniaxial and biaxial liquid-crystal-like nematic phases.

When I'm not doing science, I love playing and leading Dungeons & Dragons with friends, disc golf, coffee, movies, and progressive metal such as TOOL.

Pinned Loading

  1. PararealGPU.jl PararealGPU.jl Public

    A distributed and GPU-based implementation of the Parareal algorithm for parallel-in-time integration of equations of motion.

    Julia 4

  2. Thesis Thesis Public

    Thesis for the Computational Science Master's program at Central Washington University. 3D extension of an analog of cosmological particle creation in a Friedmann-Robertson-Walker universe by numer…

    TeX 3

  3. Plasma.jl Plasma.jl Public

    A collection of materials learning computational plasma physics focusing on nuclear fusion following Kawata 2023.

    Julia

  4. matmul matmul Public

    Implementations of multi-threaded, naive, matrix multiplication to try different programming languages.

  5. advent_of_code advent_of_code Public

    My attempts are solving Advent of Code over several years

    Mathematica

  6. Mercury_Chirp Mercury_Chirp Public

    Final project for Physics 561: Adv. Computational Physics comparing direct measurement in simulation to theoretical predictions of gravitational wave frequencies in weak-field binaries

    Python 1