Quantum Sensor Network Algorithms for Transmitter Localization
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Updated
Nov 2, 2023 - Python
Quantum Sensor Network Algorithms for Transmitter Localization
Code: A. Warke, A. Zhang, A. I. Lvovsky, "Quantum-limited imaging using diffractive optical neural networks," arXiv:2608.12300 [quant-ph] (2026).
A physics-based digital twin simulator and algorithm benchmarking suite for Fluorescent Nanodiamond (FND) Lock-In Optical Imaging.
Simulate the interaction between two systems of spins (sensors and targets)
🥇 1st Place (CU Hacking 2026) | Embedded AI and quantum sensing cave safety system that detects emergencies offline and sends alerts through solid rock.
Falsifiable engineering specs (Modules A–G) for the LifeNode Processual architecture: bio-electric & MOF transduction, NV-diamond Q-Core, Physarum biohybrid interface, ASCALON phase filter, Living Walls. Theory on Zenodo. No product — validation or falsification only. CC-BY-NC-SA 4.0. Technology adapts to Life's rhythm, not the reverse.
Deep learning to make predictions from quantum sensor measurements
Fundamentals of Quantum Computing and Sensors workshop at Illinois Institute of Technology (2021)
Interactive scientific data analysis workflow for CSV/TXT experiment data.
Process-intelligence framework for health-trajectory maintenance. Shifting healthcare from state-diagnosis to phase-coherence via quantum sensing (SiC/NV), symplectic dynamics, and bio-resonant synchronization. Validated through mycelial electrophysiology (2026) and Zero-Build protocols. From Data Architecture to Existence Architecture.
Physics-informed ESR tip magnetometry for Haldane chains with sparse 3D sensing and inverse recovery of beta and global magnetization.
Simulation of quantum-enhanced metrology using squeezed states and Ramsey interferometry. Models phase estimation precision scaling, atomic clock stability, and quantum noise spectra for sub-SQL sensing applications.
An interactive research paper exploring Quantum Gravity, bridging theoretical frameworks like String Theory and LQG with empirical testing, quantum sensing, and the socio-economic ethics of Big Science infrastructure.
Code associated with the manuscript: "Optimal squeezing for quantum target detection" by G. Spedalieri and S. Pirandola, Phys. Rev. Research 3, L042039 (2021). This work was funded by the EU Horizon 2020 Research and Innovation Action under grant agreement No. 862644 (FET Open project: Quantum readout techniques and technologies, QUARTET)
Preregistered numerical companion of 'Multifractality as a sensing resource' (the D2 figure of merit): gRP/PBRM/Sierpinski fidelity-susceptibility experiments, frozen readings, certified eigensolvers.
Reproducible ESR-STM workflow to probe spin fractionalization in S=1 Haldane chains (Phys. Rev. B 110, 045145, 2024).
Infleqtion — independent third-party profile of a public API surface, by API Evangelist. Infleqtion is a Louisville/Boulder, Colorado quantum-technology company — formerly ColdQuanta — that builds neutral-atom quantum computers, precision atomic clocks, and quantum sensors for governments, corporations, and research institutions.
Reproducible code, data, and figures for "Floquet-Lyapunov consistency and matched sensing bounds for flux-controlled hyperchaos in dissipative optomechanics" (SciPost Physics).
Simulation-only quantum sensor fusion (QSFM) — seeded demo, CI, MIT, patent pending (dual-use).
Quantumdiamonds — independent third-party profile of a public API surface, by API Evangelist. QuantumDiamonds (QD) is a Munich-based German deep-tech company that develops diamond-based quantum sensing systems for semiconductor inspection and failure analysis. The company markets what it describes as the world's first commercially available quantum
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