DOE OSTI · 1900467
Neutron Interferometric methods and quantum sensing
Abstract
Advances in material science and engineering make it possible to access artificial materials or ‘metamaterial’ properties and structures on the length scale comparable to the wavelength of ultracold neutrons ~ 100 nm. Strong neutron scattering effects such as Anderson localization, resonance scattering may be studied in the laboratory according to our recent theoretical studies. UCN interferometry and high-resolution spectroscopy (sub-pico-electronvolt resolution) in neutronic metamaterials are examples of new experimental possibilities that can probe quantum gravitational states of neutrons, and quantum sensing based on ultracold neutrons.
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Wang, Zhehui, Demarteau, Marcel, Kamiya, Yoshio, Liu, Chen-yu, Makela, Mark F., Morris, Christopher, Shih, Yanhua, Young, Albert. 2022-11-28. Neutron Interferometric methods and quantum sensing. https://doi.org/10.2172/1900467
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