About QG-Shield

Pioneering the future of quantum computing through revolutionary quantum-gravity inspired error suppression technology.

Our Mission

At QG-Shield, we're driven by a singular vision: to make quantum computing practical and reliable by solving the fundamental challenge of quantum errors through innovative physics-inspired approaches.

By leveraging insights from quantum gravity and theoretical physics, we've developed breakthrough error suppression techniques that improve circuit fidelity by up to 40% with minimal overhead.

Our mission is to democratize access to reliable quantum computing, enabling researchers, developers, and organizations to harness the full potential of quantum technology.

Error Suppression

Revolutionary quantum error mitigation

Physics-Inspired

Based on quantum-gravity principles

Global Impact

Advancing quantum computing worldwide

Our Story

From theoretical physics to practical quantum computing solutions

2019

Research Begins

Our founding team of quantum physicists began exploring the intersection of quantum gravity and quantum error correction at leading research institutions.

2022

Breakthrough Discovery

We discovered that quantum-gravity fluctuations could be modeled and suppressed using novel noise channel approaches, leading to our core technology.

2024

Product Launch

QG-Shield launches with comprehensive SDK support for Qiskit, Cirq, and AWS Braket, making quantum error suppression accessible to everyone.

Our Values

The principles that guide our work and shape our culture

Innovation First

We push the boundaries of what's possible, combining cutting-edge physics with practical engineering to solve real-world quantum computing challenges.

Scientific Rigor

Every solution we develop is grounded in rigorous scientific research and validated through extensive testing and peer review.

Collaboration

We believe in the power of collaboration, working closely with researchers, developers, and organizations to advance quantum computing together.

Global Impact

Our mission is to democratize quantum computing, making advanced error suppression accessible to researchers and developers worldwide.

Performance Excellence

We're committed to delivering solutions that not only work but excel, providing measurable improvements in quantum circuit performance.

Future-Focused

We're building the foundation for the quantum future, developing technologies that will enable the next generation of quantum applications.

Meet Our Team

World-class quantum physicists, engineers, and researchers working together to revolutionize quantum computing

AH

Dr. Ahmed Hassan

Chief Research Officer

Quantum gravity expert with 15+ years in theoretical physics. Former researcher at CERN and MIT. Leads our quantum-gravity noise model development.

SM

Dr. Sarah Mitchell

Chief Technology Officer

Quantum computing engineer with expertise in error correction. Previously led quantum software teams at IBM and Google. Drives our technical architecture and implementation.

RJ

Dr. Robert Johnson

Head of Quantum Algorithms

Algorithm specialist with deep expertise in quantum error mitigation. PhD from Stanford, former researcher at Microsoft Quantum. Develops our core suppression algorithms.

LC

Dr. Lisa Chen

Head of Integrations

Framework integration expert with experience across Qiskit, Cirq, and AWS Braket. Former quantum software engineer at Amazon. Ensures seamless integration with all major platforms.

MK

Dr. Michael Kim

Head of Performance

Performance optimization specialist with background in quantum benchmarking. PhD in quantum information theory from Caltech. Leads our performance analysis and optimization efforts.

EW

Dr. Emily Watson

Head of Research

Research director with expertise in quantum noise modeling. Former professor at UC Berkeley, published extensively on quantum decoherence and error mitigation.

Join Us in Revolutionizing Quantum Computing

Whether you're a researcher, developer, or organization looking to advance quantum computing, we'd love to collaborate with you.