activity
20172021
most citedSearch for axionlike dark matter with a liquid-state nuclear spin comagnetometer

159 citations · 346 across the 3 of their papers we have counts for

collaborators

8 papers

hep-ex202197 cited

Search for axion-like dark matter using solid-state nuclear magnetic resonance

Deniz Aybas, Janos Adam, Emmy Blumenthal +22

We report the results of an experimental search for ultralight axion-like dark matter in the mass range 162 neV to 166 neV. The detection scheme of our Cosmic Axion Spin Precession…

physics.atom-ph2020

All-Optical Single-Species Cesium Atomic Comagnetometer with Optical Free Induction Decay Detection

Yucheng Yang, Teng Wu, Jingbiao Chen +2

Atomic comagnetometers, which measure the spin precession frequencies of overlapped species simultaneously, are widely applied to search for exotic spin-dependent interactions. Her…

physics.chem-ph2019

Zero- to Ultralow-Field Nuclear Magnetic Resonance -Spectroscopy with Commercial Atomic Magnetometers

John W. Blanchard, Teng Wu, James Eills +2

Zero- to ultralow-field nuclear magnetic resonance (ZULF NMR) is an alternative spectroscopic method to high-field NMR, in which samples are studied in the absence of a large magne…

hep-ex2019159 cited

Search for axionlike dark matter with a liquid-state nuclear spin comagnetometer

Teng Wu, John W. Blanchard, Gary P. Centers +9

We report the results of a search for axionlike dark matter using nuclear magnetic resonance (NMR) techniques. This search is part of the multi-faceted Cosmic Axion Spin Precession…

hep-ex2019

Constraints on bosonic dark matter from ultralow-field nuclear magnetic resonance

Antoine Garcon, John W. Blanchard, Gary P. Centers +9

The nature of dark matter, the invisible substance making up over of the matter in the Universe, is one of the most fundamental mysteries of modern physics. Ultralight boson…

physics.atom-ph2018

Magnetic Gradiometer for Detection of Zero- and Ultralow-Field Nuclear Magnetic Resonance

Min Jiang, Roman Picazo Frutos, Teng Wu +3

Magnetic sensors are important for detecting nuclear magnetization signals in nuclear magnetic resonance (NMR). As a complementary analysis tool to conventional high-field NMR, zer…