Live Independent Verifiable and reproducible Unpaywalled NASA-sourced

Astrophyzix Digital Observatory

Trusted for Asteroid News, Research, Data & Analysis

Delivering unpaywalled, evidence-driven analysis, real-time N-Body Orbital Refinements and monitoring and tracking of all asteroids, comets and solar system objects.

Every tracking console is designed and engineered here. Systems directly ingest multiple NASA datasets covering over 1.57 million objects, then run live, verifiable probabilistic orbital analysis and deliver an instant deterministic summary of close approaches. Used by students, educators, researchers, and the public. Data provenance is traceable, verifiable and transparent. Original research papers are published on Astrophyzix.academia.edu, registered with official DOIs via Zenodo and academically indexed by OpenAIRE.

  • NASA API'S
  • CNEOS Scout
  • NEOCP
  • JPL CAD
  • NeoWs
  • SBDB
  • Horizons
  • Sentry

Sourcing Policy

Sources and Scientific Methodology

Astrophyzix.com publishes astronomy and space science material using a structured evidence-first methodology. Articles are developed from primary scientific literature, official institutional releases, and verified observational datasets wherever possible.


Primary Scientific Sources

  • Peer-reviewed astronomy and planetary science journals
  • Official spacecraft mission documentation
  • Observatory measurement archives and instrument datasets
  • University research publications and technical reports
  • Confirmed orbital and astrophysical catalogues

Data Interpretation Standards

All numerical values and technical conclusions are cross-checked against multiple authoritative sources when available. Orbital parameters, planetary measurements, and spacecraft findings are reported using the most recent validated datasets at the time of publication.

  • Measured values are distinguished from model-derived estimates
  • Uncertainty ranges are preserved where scientifically relevant
  • Competing hypotheses are presented only when supported by literature
  • Speculative interpretations without observational support are excluded

Misinformation Evaluation Framework

When analysing viral claims or disputed astronomical topics, Astrophyzix applies a structured verification process involving orbital mechanics, spectral analysis, measurement comparison, and review of instrument metadata. This ensures that conclusions are grounded in demonstrable physical evidence rather than narrative interpretation. 

Atmospheric & Anomalous Phenomena Analysis 

Analysis of unidentified or viral phenomena is conducted through the lens of known astrophysical processes and aerospace logistics. Claims are evaluated using flight telemetry, atmospheric optics, orbital tracking of space debris, and sensor-specific artifacts. This methodology ensures that anomalies are investigated as physical puzzles rather than speculative narratives


Reader Verification Principle

Astrophyzix operates under the principle that scientific claims should remain independently verifiable. Articles therefore aim to provide enough reference information for readers to locate original research publications, mission data, or institutional documentation supporting the presented findings.

Astrophyzix.com — Built on Traceable Evidence and Verifiable Science

Updated : 01 May 2026

ℹ️ Sources / Technical / Mathematical / Scientific / Academic / Integrators / Methods
Sources
  • NASA APIs
  • CNEOS Scout
  • JPL CAD
  • NeoWs
  • SBDB
  • Horizons
  • Sentry
Stack
  • IEEE-754 Float64
  • RKN4
  • Yoshida-4
  • Dormand–Prince / DOPRI5
  • DOPRI8 /DOP853
  • Verlet
  • N-Body
  • Einstein–Infeld–Hoffmann
  • DE441
  • ΛCDM
  • J2
  • Meeus
  • Yarkovsky
  • Schwarzschild GR
  • Simon 1994
  • Holsapple–Schmidt
  • Collins / Pierazzo / Ward–Asphaug
  • AIS-Wide
  • Abyssal 4 km
  • WebGPU
  • DOI Registered
  • Academia.edu
  • Zenodo
  • OpenAIRE
Independent Direct Source Verification
✅ Datacite ✅ Zenodo ✅ Crossref ✅ DOI.org ✅ Live Metadata Fetch
Awaiting DOI input