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Magnon squeezing in an antiferromagnet: reducing the spin noise below the standard quantum limit
Jimin Zhao1, A V Bragas, D J Lockwood
1Focus Center and Department of Physics, The University of Michigan, Ann Arbor, Michigan 48109-1120, USA.
Abstract:
We report the first experimental demonstration of quantum squeezing of a collective spin-wave excitation (magnon) using femtosecond optical pulses to generate correlations involving pairs of spins in an antiferromagnetic insulator MnF2. In the squeezed state, the fluctuations of the magnetization of a crystallographic unit cell vary periodically in time and are reduced below that of the ground-state quantum noise.
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