Texas Space develops quantum‑based gravitational wave communication systems that can transmit data through any material, offering a channel immune to electromagnetic interference and jamming. Their technology enables applications such as direct submarine communications without relays, through‑Earth signaling, and satellite‑free GPS positioning.
Funding
Funding not disclosed
Founders
Product
Problem
Current communication methods rely on electromagnetic waves, which can be blocked, jammed, or cannot penetrate solid matter such as earth, water, or metal enclosures. This limits secure, reliable links for submarines, underground operations, and environments where line‑of‑sight or satellite infrastructure is unavailable.
Solution
Texas Space is developing quantum‑based gravitational wave communication systems that generate, transmit, and receive laboratory‑scale gravitational waves. Because gravitational waves pass through all materials without attenuation, the technology enables direct, unjammable data links that are immune to electromagnetic interference and cannot be intercepted or blocked by shielding. The company’s approach leverages quantum physics and superconducting systems to produce controllable gravitational wave signals, which can be modulated to carry information. Received signals are decoded using specialized quantum detectors, providing a secure channel for applications such as submarine communications, through‑Earth messaging, satellite‑free positioning, underground detection, and deep‑space links.
Target Audience
Primary customers include defense and naval organizations requiring secure submarine links, government agencies and enterprises needing underground or through‑Earth communication, and space mission planners seeking electromagnetic‑independent deep‑space telemetry.
Features
- Quantum‑engineered source capable of generating controllable gravitational wave pulses at laboratory scale
- Superconducting detector array that receives and demodulates gravitational wave signals with high sensitivity
- Modulation scheme that encodes digital data onto gravitational wave carriers for reliable transmission
- End‑to‑end system architecture supporting communication through water, rock, earth, and Faraday‑shielded environments
- Applications framework for submarine, underground, GPS‑free navigation, and deep‑space communication scenarios
- Proprietary intellectual property portfolio with multiple provisional patents covering generation, transmission, and reception technologies