By D. P. Landau, S. P. Lewis, H.-B. Schüttler (auth.), Professor David P. Landau Ph.D., Professor Steven P. Lewis Ph.D., Professor Heinz-Bernd Schüttler Ph.D. (eds.)
This publication is a standing record. It offers a extensive assessment of the newest advancements within the box, spanning quite a lot of topical parts in simulational condensed topic physics. those components contain fresh advancements in simulations of classical statistical mechanics types, digital constitution calculations, quantum simulations, and simulations of polymers. either new actual effects and novel simulational and information research equipment are awarded. a few of the highlights of this quantity comprise distinct money owed of modern theoretical advancements in digital constitution calculations, novel quantum simulation innovations and their functions to strongly interacting lattice fermion types, and a wide selection of purposes of current equipment in addition to novel equipment within the simulation of classical statistical mechanics types, together with spin glasses and polymers.
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Additional resources for Computer Simulation Studies in Condensed-Matter Physics XV: Proceedings of the Fifteenth Workshop Athens, GA, USA, March 11–15, 2002
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Metamagnetism is observed in classical as well as in quantum systems and can be attributed to anisotropic terms in the Hamiltonian. After a short illustration of the basic features of magnetization curves in Sect. 2 we discuss in this paper a new type of a macroscopic magnetization jump. This new kind of jump is a pure quantum effect and appears in strongly frustrated AFM even without any anisotropic terms in the Hamiltonian. 1) (ij) where the sum runs on nearest neighbors. We focus on the isotropic case L1 = 1 but our considerations are not restricted to that case.
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