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dc.rights.licenseCC-BY-NC-ND
dc.contributor.advisorDuine, R.A.
dc.contributor.authorSchrijnder van Velzen, S.V.
dc.date.accessioned2016-02-23T18:01:02Z
dc.date.available2016-02-23T18:01:02Z
dc.date.issued2016
dc.identifier.urihttps://studenttheses.uu.nl/handle/20.500.12932/21911
dc.description.abstractWe consider fluctuations in magnetic systems around the classically-ordered ground state. We use a Holstein-Primakoff transformation to calculate the zero-point energy fluctuations in antiferromagnetic lattice configurations using the Heisenberg exchange Hamiltonian. We show that these quantum fluctuations lower the classically expected ground state. Furthermore we provide a numerical method to calculate dispersion relations for magnetic systems and specifically show that our analytical results can be produced. Also, we investigate the spin-flop transition in a one dimensional antiferromagnetic system with anisotropy. Our calculations show that the transition occurs at B/K ≈ -14, where B is the external field and K the anisotropy constant. Furthermore, we show that quantum fluctuations decrease the energy of both the antiferromagnetic and the spin-flop state by calculating the dispersion relation. Our results imply a shift of the transition point between the two states. Our results are a first step towards incorporating the effects of quantum fluctuations in inhomogeneous antiferromagnets.
dc.description.sponsorshipUtrecht University
dc.format.extent630621
dc.format.mimetypeapplication/pdf
dc.language.isoen
dc.titleQuantum fluctuations in antiferromagnetic spin configurations
dc.type.contentBachelor Thesis
dc.rights.accessrightsOpen Access
dc.subject.courseuuNatuur- en Sterrenkunde


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