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Self-organized patterns of macroscopic quantum tunneling in molecular magnets

arXiv:0903.2247 · doi:10.1103/PhysRevLett.102.097206

Abstract

We study low temperature resonant spin tunneling in molecular magnets induced by a field sweep with account of dipole-dipole interactions. Numerical simulations uncovered formation of self-organized patterns of the magnetization and of the ensuing dipolar field that provide resonant condition inside a finite volume of the crystal. This effect is robust with respect to disorder and should be relevant to the dynamics of the magnetization steps observed in molecular magnets.

4 Phys. Rev. pages, 5 figures