Repository for the EinsteinPy core package 🚀
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Updated
Jun 25, 2024 - Python
Repository for the EinsteinPy core package 🚀
Python package for generating the overlap reduction function---stochastic gravitational wave background spatial correlation---and simulating a Gaussian SGWB signal in pulsar timing arrays
Raw RINEX validation of distance-structured correlations in GNSS atomic clocks. Detects exponential decay signatures (λ≈1-4 km) in 539 stations using SPP with broadcast ephemerides, eliminating processing artifact hypothesis. Shows E-W>N-S anisotropy, CMB alignment, orbital coupling. TEP-GNSS Paper 3.
A 2D physics simulation built using Python and Pygame that demonstrates the gravitational slingshot effect. The user can launch a spacecraft and observe how its path changes based on the gravity of different planets.
Numerical simulations and assignments for the General Relativity course
Universal critical density ρ_T ≈ 20 g/cm³ from R ∝ M^(1/3) scaling. GNSS-calibrated (L_c ≈ 4200 km), validated across SPARC galaxies, Milky Way, magnetars. Temporal Topology screening reconciles galactic dynamics with GR tests. TEP Paper 6.
CMB Cold Spots as Energy Conservation Signatures: A Pedagogical Framework for Understanding Supervoid ISW Effects
Verum Interior Gauge (VIG): a reproducible framework for comparative critical-growth laws in regular black-hole interiors, with exact and asymptotic results for Hayward and Bardeen models, full-edge comparison, master-driver outputs, and manuscript-grade figures, code, and data.
Unified Attractor Complexity Model (UACM) A Dual-Framework Cosmology: Indigenous Wisdom and Thermodynamic Integration
Fingerprint atlas and precision forecasts for regular black hole models via the joint exterior–interior ISCO invariant and Kerr–Hayward extension
Gaia DR3 wide binaries (341,315 systems) show Temporal Shear recovery at R_s=2,646±182 AU (Δχ²=14,845 vs Newtonian). Saturation α_sat=0.366±0.012. Environmental ordering confirmed (p<10⁻⁴). TEP conformal screening transition
🌌 Explore dark matter dynamics with TEP-UCD, unifying atomic, galactic, and compact object scales through observed critical density patterns.
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