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10.1038/ncomms11443

http://scihub22266oqcxt.onion/10.1038/ncomms11443
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C4855527!4855527!27126449
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suck abstract from ncbi

pmid27126449      Nat+Commun 2016 ; 7 (ä): ä
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  • Quantum Einstein-de Haas effect #MMPMID27126449
  • Ganzhorn M; Klyatskaya S; Ruben M; Wernsdorfer W
  • Nat Commun 2016[]; 7 (ä): ä PMID27126449show ga
  • The classical Einstein-de Haas experiment demonstrates that a change of magnetization in a macroscopic magnetic object results in a mechanical rotation of this magnet. This experiment can therefore be considered as a macroscopic manifestation of the conservation of total angular momentum and energy of electronic spins. Since the conservation of angular momentum is a consequence of a system's rotational invariance, it is valid for an ensemble of spins in a macroscopic ferromaget as well as for single spins. Here we propose an experimental realization of an Einstein-de Haas experiment at the single-spin level based on a single-molecule magnet coupled to a nanomechanical resonator. We demonstrate that the spin associated with the single-molecule magnet is then subject to conservation of total angular momentum and energy, which results in a total suppression of the molecule's quantum tunnelling of magnetization.
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