← Back

Quantum X Labs Inc.

Quantum X Labs Inc., through its subsidiaries, focuses on quantum technology, digital advertising and computing, and enterprise artificial intelligence (AI) solutions. The company develops and owns quantum computing technology as well as a quantum error correction solution, quantum simulations, and quantum sensing technologies. It researches, develops, and commercializes quantum solutions across sectors, including navigation, precision timing, quantum algorithms, quantum error correction, drug discovery, biomedicine, nuclear simulation, transportation, and quantum cyber security. The company was formerly known as Viewbix Inc. and changed its name to Quantum X Labs Inc. in April 2026. The company is based in Ramat Gan, Israel. Quantum X Labs Inc. operates as a subsidiary of Gix Internet Ltd.

Price · split & dividend adjusted
News & notes moving QXL
Quantum Computing

Quantum X Labs Launches Qatacomb Quantum Security Research Initiative

Quantum X Labs Inc. has announced the launch of Qatacomb, a new research initiative through its QuantumQ Security operation to explore quantum-native approaches to protecting sensitive information. The program will investigate security architectures that combine efficient access for authorized users with security properties rooted in quantum physics, and will include theoretical validation, simulation, and proof-of-concept testing on quantum hardware. The company cites a growing strategic need as quantum computing reshapes cybersecurity, with the global quantum security market projected to grow from approximately $2.5 billion in 2026 to approximately $9.8 billion by 2030, a compound annual growth rate of about 40%. Prof. Nir Sharon, Chief Technology Scientist, emphasized the goal of making quantum physics an integral part of the protection architecture itself. The initiative expands Quantum X Labs' research into quantum security, complementing its work in quantum computing, software, simulation, and sensing.
GlobeNewswire·18hRead more ▾
Quantum Computing

Quantum X-Labs Advances Quantum Computing for Nuclear Particle Transport Prediction

Quantum X Labs announced that its subsidiary Nuclear Quantum has developed a quantum computing approach to address a bottleneck in nuclear particle transport simulations. The technology translates the physical transport model into a quantum circuit, allowing particle propagation and random-walk dynamics to be simulated directly within quantum computation. The project establishes the core quantum oracle required for future integration with Grover-inspired quantum algorithms. Nuclear Quantum plans to expand the model to more complex transport scenarios and evaluate its potential to support faster, more precise, and more scalable simulation tools for the nuclear-medicine industry.
GlobeNewswire·21dRead more ▾
Quantum Computing

Quantum X Labs Reports Error Correction Decoder Results Using NVIDIA CUDA-Q QEC

Quantum X Labs announced progress on its AI-driven quantum error-correction program, reporting that its transformer-based QECCT decoder outperformed the classical Minimum-Weight Perfect Matching decoder in selected simulated regimes. The company executed its Deep Quantum Error Correction workflow on an NVIDIA GPU in an AWS environment and benchmarked the decoder across controlled toric-code noise configurations. QXL also tested synthetic surface-code configurations modeled on Google's public surface-code geometry, with the QECCT decoder showing stable logical and bit error rates under varying physical error conditions. Future work is expected to extend evaluations to publicly available experimental datasets and refine data pipelines compatible with NVIDIA CUDA-Q QEC frameworks, while the broader roadmap includes planned work with IQCC, a Quantum Machines company, to generate hardware-derived syndrome data on superconducting quantum processing hardware.
GlobeNewswire·33dRead more ▾
Defense & Geopolitical Fragmentation

Quantum X Labs Demonstrates First All-Optical HRG Architecture

Quantum X Labs has demonstrated its first fully all-optical Hemispherical Resonator Gyroscope in its laboratory. The system uses optical excitation and optical readout instead of conventional electrostatic actuation and sensing, removing electrode structures from the resonator design. This architecture is intended to reduce reliance on electrode-based components, offering simpler resonator architecture, fewer potential failure points, intrinsic electrical isolation, and reduced sources of noise and drift. The demonstration supports continued development of optical inertial sensing systems for potential deployment in aerospace, defense, autonomous transportation, and navigation applications. Quantum X Labs plans to refine the technology through performance optimization, system integration, and evaluation of potential collaborations, with a development path toward deployable inertial measurement units.
GlobeNewswire·56dRead more ▾