Computational Physics + Generative AI

Imagined Cosmos

Einstein said the most important thing is imagination. We use code and generative AI to visualize the deepest problems in physics — dark energy, the cosmological constant, and the geometry of spacetime.

“Imagination is more important than knowledge. Knowledge is limited. Imagination encircles the world.”
— Albert Einstein

Where Code Meets Curvature

Gμν

General Relativity

Einstein field equations, geodesics, and the geometry of spacetime — derived and simulated in code.

Λ

The Cosmological Constant

The worst prediction in physics: why does vacuum energy disagree with observation by 120 orders of magnitude?

AI Visualization

Generative AI as an imagination engine — rendering what equations describe but humans can't see.

Our Approach

1

Derive

Start from first principles. Work through the mathematics of general relativity, cosmology, and quantum field theory.

2

Simulate

Translate equations into code. Run numerical simulations of cosmic expansion, gravitational dynamics, and dark energy models.

3

Imagine

Use generative AI to visualize what the math describes — curved spacetime, vacuum fluctuations, the accelerating universe.

4

Share

Publish articles, videos, and interactive visualizations that make frontier physics accessible and beautiful.

Latest

Research Topics

Dark Energy & Accelerating Expansion

Type Ia SupernovaeBAOEquation of State

The Cosmological Constant Problem

Vacuum Energy10^120 DiscrepancyFine-Tuning

Friedmann Equations & Cosmic Evolution

Scale FactorDeceleration ParameterLCDM

The Hubble Tension

H0 DiscrepancyEarly vs Late UniverseNew Physics?

Modified Gravity Theories

f(R) GravityDGPEmergent Gravity

Computational Methods

Numerical RelativitySymPyNeural ODEs