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GZ

g2-Zero

g2-Zero develops electrical, vibration-resistant, and alignment-free single photon sources tailored for quantum communication applications. This technology provides reliable photon generation, essential for enhancing secure data transmission in quantum networks.

Madrid, SpainFounded 20207700+ followers
Updated 4 months ago

Funding

$335.7K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Quantum communication systems require reliable and efficient single-photon sources, but existing solutions often suffer from alignment sensitivity and susceptibility to environmental vibrations, hindering their practical deployment. Traditional single-photon sources also require complex setups and careful calibration, increasing the cost and complexity of quantum communication infrastructure.

Solution

g2-Zero develops plug-and-play single-photon sources designed for quantum communication applications. Their technology utilizes a purely electrical approach, eliminating the need for optical alignment and providing inherent vibration resistance. This results in a robust and easy-to-integrate single-photon source suitable for deployment in real-world quantum networks. The devices are designed for on-demand photon generation, offering precise control over photon emission for enhanced security and efficiency in quantum key distribution and other quantum communication protocols.

Target Audience

The primary target audience includes organizations involved in quantum communication research and development, telecommunications companies implementing quantum key distribution networks, and government agencies focused on secure communication infrastructure.

Features

  • Electrically driven single-photon generation for simplified operation
  • Alignment-free design for enhanced stability and ease of integration
  • Vibration-resistant construction for reliable performance in diverse environments
  • Tunable photon emission for customized quantum communication protocols
  • Scalable production methods for cost-effective deployment
  • Integration-ready design for seamless incorporation into photonic circuits
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