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From the 1 of 8 linked papers with an AI index.

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20242026
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hep-ph2025

Detecting Axion Dark Matter with an Organic Molecular Maser

Hongliang Wu, Yuchen Han, Zhengtao Wang +7

We present a novel quantum sensing approach to search for axion-electron interactions around the axion mass of 6 \mueV. In this region, laboratory searches are relatively scarce, a…

quant-ph2025

Hyperpolarized Molecular Nuclear Spins Achieve Magnetic Amplification

Shengbang Zhou, Qing Li, Yi Ren +6

The use of nuclear spins as physical sensing systems is disadvantaged by their low signal responsivity, particularly when compared to sensing techniques based on electron spins. Th…

physics.chem-ph20251 cited

Nuclear spin relaxation in zero- to ultralow-field magnetic resonance spectroscopy

Florin Teleanu, Anne M. Fabricant, Chengtong Zhang +4

Nuclear-magnetic-resonance experiments can interrogate a broad spectrum of molecular-tumbling regimes and can accurately measure interatomic distances in solution with sub-nanomete…

quant-ph2025

Solving tricky quantum optics problems with assistance from (artificial) intelligence

Manas Pandey, Bharath Hebbe Madhusudhana, Saikat Ghosh +1

The capabilities of modern artificial intelligence (AI) as a ``scientific collaborator'' are explored by engaging it with three nuanced problems in quantum optics: state population…

physics.chem-ph2025

Zero- to Ultralow-field Nuclear Magnetic Resonance

Danila A. Barskiy, John W. Blanchard, Dmitry Budker +5

Zero and ultralow-field nuclear magnetic resonance (ZULF NMR) is an NMR modality where experiments are performed in fields at which spin-spin interactions within molecules and mate…