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Projects

Open-source work spanning particle-physics research code, general scientific-computing tools, and the occasional data-science experiment. Everything here is public on GitHub.

Energy-correlator bullseye visualization
Python · C++

ResolvedEnergyCorrelators

A computational speed-up that broke records for N-particle energy correlations, turning physics-rich QCD correlations into "bullseye" images you can read intuitively.

↑↓↑
Python

Ising

A Python toolbox for one-dimensional quantum spin chains: model Hamiltonians, operators, symmetries, spectra, and entanglement-entropy calculations for studying thermalization.

Code ★ 2
Energy-weighted observable correlator spectrum
Mathematica · C++ · Python

Energy-Weighted Observable Correlators

Tools for energy-weighted differential cross sections between pairs of jet and subjet observables ("EWOCs"), isolating clean, calculable structure inside LHC events.

MC
Python

JetMonteCarlo

Monte-Carlo tools for jet physics: phase-space integration and parton-shower algorithms at leading, leading-log, and modified-leading-log accuracy. The engine behind PIRANHA.

Code PIRANHA ★ 3
Python

ShowerPy

A lightweight Python library for parton showering — simulating the branching cascades of quarks and gluons that produce jets in high-energy collisions.

BSM
Mathematica · Fortran

BeamDumpBSM

Analytic, approximate, and Monte-Carlo tools for computing the production of beyond-the-Standard-Model particles at a high-energy muon beam dump, with FeynRules / MadGraph model generation.

LFM
Python · on PyPI

LibrarianFileManager

General-purpose file-management tools for initializing, cataloging, and interacting with complex data and figure directories — a "librarian" for research projects. Published to PyPI.

Code PyPI ★ 2
.pln
Python

planner

A terminal- and Vim-first planner and journal. Write structured plain-text .pln files, then compile them into a polished, mobile-friendly HTML dashboard — no database required.

PhD
TeX

Thesis

Source and resources for my MIT Ph.D. thesis, Particles Inside Particles: The Flow of Energy in Quarks, Gluons, and Jets.

Notes

Lecture & study notes

Notes I've written over the years across quantum field theory, QCD, and mathematical physics — shared in case they're useful, typeset with my own LaTeX notes template.

PDF · Quantum field theory

Unitarity

Unitarity, the optical theorem, and the constraints they place on scattering amplitudes in QFT.

PDF · Formal QFT

TT̄ Deformation

The irrelevant TT̄ deformation of two-dimensional quantum field theories and its solvable structure.

PDF · Mathematical physics

Basic Grassmannian

Grassmann numbers and Berezin integration — the algebra that makes fermions work in path integrals.

PDF · QCD

Hadrons

The structure, classification, and phenomenology of hadrons as bound states of quarks and gluons.

PDF · Particle physics

The Higgs Mechanism

Electroweak symmetry breaking and the Higgs mechanism — how gauge bosons and fermions get their mass.