A universal s-wave resonance is accessible in dipolar fermionic spin mixtures via microwave parameters, enabling tunable interactions and tetratomic bound states without losing shielding.
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Bessel beam nuclear forward scattering in 229Th:CaF2 can determine the relative distribution of quantization axis directions inside the crystal.
citing papers explorer
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Tunable Field-Linked $s$-wave Interactions in Dipolar Fermi Mixtures
A universal s-wave resonance is accessible in dipolar fermionic spin mixtures via microwave parameters, enabling tunable interactions and tetratomic bound states without losing shielding.
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Nuclear forward scattering of Bessel beams in $^{229}$Th:CaF$_2$
Bessel beam nuclear forward scattering in 229Th:CaF2 can determine the relative distribution of quantization axis directions inside the crystal.