Pysing
A Python library for simulating lattice models
A Python library for simulating lattice models
Short description of portfolio item number 2 
Published in 51st ACM/IEEE International Symposium on Computer Architecture (ISCA), 2024
A systems architecture that physically moves SSD-resident datasets through data centres, reducing data-movement time and energy for large-scale workloads.
Published in Nature Communications, 2024
A reconfigurable probabilistic-bit Ising-machine architecture that emulates all-to-all connectivity while retaining highly parallel sampling for hard combinatorial optimization.
Published in ML4Astro Workshop, Co-located with ICML 2025, 2025
A flow-matching framework that compresses cosmological field simulations into compact, interpretable representations for reconstruction, generation, and parameter inference.
Published in NeurIPS 2025 Workshop on AI for Science, 2025
Graph neural network surrogates that reproduce LIGO interferometer simulations up to 815 times faster, supporting more efficient instrumentation design.
Published:
Gave a talk on my summer research at LIGO Laboratory on using graph neural networks and Kolmogorov-Arnold Networks for interferometer emulation, as part of the annual undergraduate research symposium.
Published:
Gave an invited talk on the connections between statistical physics and machine learning to a group of PhD students from MIT, Tufts, Northwestern, and Brandeis.
Seminar, University of California, Santa Barbara, College of Creative Studies, 2025
I had the privilege of teaching a 10 week seminar course on statistical mechanics and its connections to machine learning theory. We covered the following topics: 1] Boltzmann statistics, 2] the Ising model and mean field theories, 3] Energy based models and Boltzmann machines, 4] Diffusion Models, 5] Fokker-Planck equations and the probability flow ODE, 6] Effective field theories of neural networks, and 7] Neural tangent kernels.
Undergraduate Colloquium, University of California, Santa Barbara, College of Creative Studies, 2026
I taught this ten-week undergraduate colloquium on non-equilibrium statistical mechanics under the supervision of Ian Banta. The course developed stochastic and microscopic descriptions of systems away from thermal equilibrium, with topics including stochastic processes, transport, Brownian motion, Fokker-Planck dynamics, kinetic theory, hydrodynamics, and projection-operator methods.