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Government Contract

AOSense Government Contract

Analyze this government contract signal for AOSense: amount, program, announced date, related organizations, Intel context, and source evidence.

U.S. government agencies
Verified 2026-06-23
Recipient
AOSense
Amount
Unknown USD
Program
U.S. government agencies
Announced
2023-01-01

Related Organizations

1 linked

Related Intel

6 linked

Related Research

6 linked

Quantum Computing - arXiv Quant-Ph Recent

Observable Estimation in the Absence of Classical Verification

The paper presents a framework for independently validating quantum estimates when exact classical verification is unavailable. It studies semi-scrambling dynamics with an operator Loschmidt echo on superconducting quantum hardware and combines consistency tests with noise-model validation to support error-bounded estimates.

Quantum Computing - arXiv Quant-Ph New

Enabling Neutral Atom Integration: Redesigning Device Models for Universal Quantum Ecosystems

An arXiv research paper examines how quantum software and device models can be redesigned to support neutral-atom hardware as part of broader interoperable quantum ecosystems.

Quantum Computing - arXiv Quant-Ph Recent

Dynamic Entanglement Distribution for Multi-User and Multi-Protocol Quantum Networking

An international team demonstrates a q-ROADM-enabled metropolitan fibre network that dynamically distributes polarisation-entangled photon pairs to six users, supports full-mesh, partial-mesh, and sliced configurations, and reports stable full-mesh operation for more than 150 hours.

Quantum Networking - USTC / Chinese Academy of Sciences

Satellite-based entanglement distribution over 1200 kilometers

Demonstrated satellite-based entanglement distribution using the Micius satellite. Commercial and government relevance for satellite QKD and quantum internet infrastructure.

Post Quantum Security - NIST

FIPS 205 Stateless Hash-Based Digital Signature Standard

NIST standardizes SLH-DSA for stateless hash-based digital signatures. Supports high-assurance quantum-safe signature use cases.

Quantum Sensing - MIT

Quantum-enhanced measurements: beating the standard quantum limit

Shows theoretical foundations for quantum-enhanced precision measurement. Commercial relevance spans clocks, gravimeters, magnetometers, and inertial sensors.

Related Topic Pages

3 linked