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Experimental Limit on Neutron Orbital Angular Momentum Detection Using Polarized 3He
D. Sarenac, O. Lailey, D. V. Garrad +11
A recent proposal suggested that neutron orbital angular momentum (OAM) states could be detected via spin-polarized absorption in polarized 3He, with predicted cross-section variat…
Multimode structured neutron beams
Owen Lailey, Dusan Sarenac, Charles W. Clark +9
The experimental realization of neutron orbital angular momentum (OAM) states and neutron Airy beams has opened new avenues for structured neutron science in both materials charact…
Generation of neutron Airy beams
Dusan Sarenac, Owen Lailey, Melissa E. Henderson +8
The Airy wave packet is a solution to the potential-free Schrodinger equation that exhibits remarkable properties such as self-acceleration, non-diffraction, and self-healing. Alth…
Small-angle scattering interferometry with neutron orbital angular momentum states
Dusan Sarenac, Melissa E. Henderson, Huseyin Ekinci +8
Access to the neutron orbital degree of freedom has been enabled by the recent actualization of methods to prepare and characterize neutron helical waves carrying orbital angular m…
Phase and contrast moiré signatures in two-dimensional cone beam interferometry
D. Sarenac, G. Gorbet, Charles W. Clark +13
Neutron interferometry has played a distinctive role in fundamental science and characterization of materials. Moiré neutron interferometers are candidate next-generation instrumen…
Cone beam neutron interferometry: from modeling to applications
D. Sarenac, G. Gorbet, C. Kapahi +12
Phase-grating moire interferometers (PGMIs) have emerged as promising candidates for the next generation of neutron interferometry, enabling the use of a polychromatic beam and man…