activity
20242026
collaborators

5 papers

hep-ph2026

Enhanced Dark Matter Quantum Sensing via Geometric Phase

Xiaolin Ma, Jie Sheng

We propose a quantum sensing protocol for coupled qubit-oscillator systems that surpasses the standard quantum limit by exploiting a geometric phase for dark matter searches. Inste…

hep-ph2025

Coherence from Randomness: Sub-keV Dark Matter Scattering off Random, Heterogeneous Materials

Zhi-Han Liu, Shigeki Matsumoto, Jie Sheng +1

The sub-keV mass range has long posed a challenge for the direct detection of dark matter via elastic scattering. In this Letter, we propose a new mechanism in which dark matter, a…

hep-ph2025

Torsion Balance Experiments Enable Direct Detection of Sub-eV Dark Matter

Shigeki Matsumoto, Jie Sheng, Chuan-Yang Xing +1

Light dark matter with sub-eV masses has a high number density in our galaxy, and its scattering cross section with macroscopic objects can be significantly enhanced by coherence e…

hep-ph2025

Detecting the Coupling of Axion Dark Matter to Neutron Spins at Spallation Sources via Rabi Oscillation

Peter Fierlinger, Jie Sheng, Yevgeny V. Stadnik +1

We propose a novel detection method for axion dark matter using the Rabi oscillation of neutron spins in beam-based measurements. If axions couple to neutron spins, a background os…

hep-ph2024

Detecting meV-Scale Dark Matter via Coherent Scattering with an Asymmetric Torsion Balance

Pengshun Luo, Shigeki Matsumoto, Jie Sheng +3

Dark matter with mass in the crossover range between wave dark matter and particle dark matter, around eV, remains relatively unexplored by terrestrial experim…