NeuroSphere

Exploring theUniverse Through Neutrinos

The world's first space-based neutrino detection network, revolutionizing our understanding of the cosmos and Earth's interior.

2025
Launch Date
NEURO
PROJECT

Why Neutrinos Matter

Neutrinos travel virtually unimpeded through matter, carrying unique information about their origins—whether from Earth's core or distant galaxies. By detecting these "ghost particles," we gain unprecedented insights impossible through conventional methods.

2025
Orbital Mission

Our Pioneering Approach

Our 2025 orbital mission places specialized neutrino detectors in polar orbit, creating four revolutionary capabilities:

Mapping Cosmic Sources

Identifying high-energy neutrino origins across the entire sky with 5-10x greater efficiency than ground-based facilities.

Revealing Earth's Interior

Creating detailed 3D visualizations of our planet's internal structure from crust to core for resource exploration and hazard prediction.

Early Warning Systems

Providing hours of advance notice for supernovae and other high-energy cosmic events for coordinated astronomical observations.

Communication Breakthroughs

Pioneering research into neutrino-based communication that penetrates any physical barrier for secure transmissions.

Neutrino Science From Space

Our space-based detection network creates an unprecedented window into Earth and cosmos.

SPACE ADVANTAGE

Complete sky coverage in a single mission

Unique cross-sectional views through Earth

Detection sensitivity increased by 2-3 orders of magnitude

Equipment 100x smaller than ground equivalents

TRANSFORMING INDUSTRIES

Resource Discovery

  • 70-80% reduction in exploration costs
  • 40-60% higher discovery success rates
  • Critical minerals worth $1.5T by 2030
  • Geothermal energy mapping ($250B market)

Hazard Prediction

  • Volcanic eruptions predicted months ahead
  • Precise seismic risk zone identification
  • Core-mantle boundary monitoring
  • Early warning systems (10:1 economic return)

Communication

  • Submarine communication without surfacing
  • Physically unhackable secure channels
  • Deep underground connectivity
  • Disaster-proof emergency systems

Scientific Value

  • Fundamental theories with 20-30x ROI
  • Protection for $1T+ in space assets
  • Early detection of cosmic events
  • Quantum applications ($65B market)
Projected economic impact:$50-100B annually

Technological Innovations

Our 2025 orbital mission places the first dedicated neutrino detectors in polar orbit, overcoming fundamental limitations of ground-based detection.

Space Neutrino Detector

SpaceNeuD

Miniaturized neutrino detection technology for space deployment, 100x smaller than ground facilities with 2-3 orders higher sensitivity.

SPECIFICATIONS

Size: 50×50×30 cm
Energy: 1 MeV-100 TeV
Direction: 15°
Power: 20W

Cosmic Neutrino Mapping

CosmicNeuMap

Advanced algorithms for tracking high-energy cosmic neutrino sources, providing supernova early warnings and mapping active galactic nuclei.

SPECIFICATIONS

Full sky coverage
Supernova warning
Multi-messenger integration
Dark matter exploration

Earth Neutrino Tomography

EarthNeuTomo

Revolutionary imaging technology using neutrinos passing through Earth to create detailed 3D models of our planet's interior structure.

SPECIFICATIONS

Resolution: ~100 km
Density: ~0.1 g/cm³
Full crust-to-core coverage
Quarterly updates

Neutrino Communication

NeuComm

Experimental technology for using neutrinos as information carriers, enabling communication through any physical barrier.

SPECIFICATIONS

Data rate: 0.1-1 bit/s
Earth-penetrating
Unjammable signals
Quantum error correction

Scientific Roadmap

1

Technology Development

  • Miniaturized detector materials optimized for space
  • Radiation-hardened photosensors
  • AI-driven signal processing algorithms
  • Complete system integration and testing
  • Launch preparation and certification
2

Space Deployment

  • Detector constellation launch to polar orbit
  • System commissioning and calibration
  • First neutrino detections from space
  • Data transmission pipeline activation
  • Initial performance validation
3

Scientific Operations

  • Complete cosmic neutrino source mapping
  • Initial Earth interior structure analysis
  • Algorithm optimization based on real data
  • Global research data sharing network
  • Early resource and geological applications
4

Applications Development

  • 3D Earth interior visualization
  • Resource deposit identification systems
  • Seismic prediction implementation
  • Neutrino communication experiments
  • Commercial exploration services launch
5

Network Expansion

  • Second-generation enhanced detectors
  • Additional orbital constellations
  • Specialized industry applications
  • Full commercial services deployment
  • Advanced communication technology research

Our Vision

Scientific Frontiers

  • Cosmic Mapping:
    First complete sky survey of high-energy neutrino sources
  • Earth's Interior:
    Revolutionary visualization of our planet's internal structure
  • Fundamental Physics:
    Testing particle theories in conditions impossible on Earth
  • Cross-disciplinary Innovation:
    Advancing detection methods beyond neutrino science

Sustainable Impact

  • Resource Discovery:
    Locating critical minerals with minimal environmental footprint
  • Energy Transformation:
    Unlocking geothermal potential through precise mapping
  • Water Security:
    Enhancing groundwater management in an era of scarcity
  • Disaster Resilience:
    Creating early warning systems for earthquakes and eruptions

Enduring Value

  • Economic Benefits:
    $50-100B annual impact across multiple industries
  • Open Science Platform:
    Democratizing access to unprecedented data
  • Scientific Leadership:
    Establishing foundations for next-generation research
  • Global Security:
    Enhancing infrastructure protection and environmental monitoring

Our work delivers immediate practical applications while creating a scientific legacy that will benefit humanity for generations.

Partners

University of Tokyo
Max Planck Society
Institute for Cosmic Ray Research