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Magnetic deflection of high-spin sodium dimers formed on helium nanodroplets

Published 15 May 2025 in physics.atm-clus, physics.atom-ph, physics.chem-ph, and quant-ph | (2505.10523v1)

Abstract: Spectroscopic data on alkali-atom dimers residing on the surface of liquid helium nanodroplets have revealed that they are detected primarily in the weakly bound, metastable, spin-triplet state. Here, by measuring the magnetic Stern-Gerlach deflection of a sodium-doped nanodroplet beam, we transparently demonstrate the abundance of high-magnetic-moment dimers. Their electron spins thermalize with the cryogenic superfluid droplets and become fully oriented by the external magnetic field.

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