4.6 Article

Magnetic deflection of neutral sodium-doped ammonia clusters

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d0cp04647g

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  1. Swiss National Science Foundation [200020_172472]
  2. ETH Zurich
  3. Israel Science Foundation
  4. Swiss National Science Foundation (SNF) [200020_172472] Funding Source: Swiss National Science Foundation (SNF)

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In this study, the setup and performance of a new pulsed Stern-Gerlach deflector for small sodium-doped ammonia clusters have been described. NaNH3 showed expected deflection, while larger clusters displayed smaller deflections, with intracluster relaxation times estimated to be around 200 microseconds. This research aims to improve understanding of the magnetic properties of isolated, weakly-bound clusters.
We describe the setup and the performance of a new pulsed Stern-Gerlach deflector and present results for small sodium-doped ammonia clusters Na(NH3)(n) (n = 1-4) in a molecular beam. NaNH3 shows the expected deflection of a spin 1/2 system, while all lager clusters show much smaller deflections. Experimental deflection ratios are compared with the values calculated from molecular dynamics simulations. The comparison reveals that intracluster spin relaxation in NaNH3 takes place on a time scale significantly longer than 200 mu s. Assuming that intracluster relaxation is the cause of the reduced deflection, relaxation times seem to be on the order of 200 mu s for all larger clusters Na(NH3)(n) (n = 2-4). Our work is a first attempt to understand the magnetic properties of isolated, weakly-bound clusters with relevance to the variety of diamagnetic and paramagnetic species expected in solvated electron systems.

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