Quantum X Labs Files for U.S. Patent to LayerQake, a Quantum Cybersecurity Technology Designed to Detect Rare and Anomalous Events
Key Highlights
- ➤Quantum X Labs (QXL) filed a U.S. patent application for LayerQake.
- ➤LayerQake detects and localizes rare anomalous events in high-dimensional data.
- ➤Two-stage stratified process increases mode and credible-region resolution without more qubits.
- ➤LayerQake could trigger inspections, maintenance, control adjustments or recording decisions.
Expert Statements
Yaki Baranes, Chief Executive Officer of Quantum X Labs
“We believe the global transition toward quantum computing is creating a new category of security and detection requirements, particularly as quantum technologies move closer to real-world applications.”
Yaki Baranes, Chief Executive Officer of Quantum X Labs
“During the recent period, we have been expanding our focus on the defense sector and on technologies that can address emerging requirements across defense, aerospace, homeland security and critical infrastructure.”
Yaki Baranes, Chief Executive Officer of Quantum X Labs
“The appointment of Yossi Cohen as President of our Scientific Advisory Board further strengthens this strategic direction.”
Yaki Baranes, Chief Executive Officer of Quantum X Labs
“We believe our innovative technologies have excellent potential to integrate into the emerging quantum ecosystem, and LayerQake represents an important component of our broader vision for quantum-native cybersecurity.”
New technology applies quantum stratified inference, amplitude amplification and Bayesian analysis to detect and localize rare anomalous activity in high-dimensional data environments
TEL AVIV, Israel, Oct. 01, 2026 (GLOBE NEWSWIRE) -- Quantum X Labs Inc. (Nasdaq: QXL) (“Quantum X Labs” or the “Company”) today announced that its wholly-owned subsidiary, Quantum X Labs Ltd. (“Quantum X” or “QXL”), today announced the filing of a U.S. patent application for LayerQake, a quantum cybersecurity technology designed to detect and localize rare and anomalous events.
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