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      The quantum Hall ferromagnet at high filling factors: A magnetic field induced Stoner transition

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          Abstract

          Spin splitting in the integer quantum Hall effect is investigated for a series of Al\(_{x}\)Ga\(_{1-x}\)As/GaAs heterojunctions and quantum wells. Magnetoresistance measurements are performed at mK temperature to characterize the electronic density of states and estimate the strength of many body interactions. A simple model with no free parameters correctly predicts the magnetic field required to observe spin splitting confirming that the appearance of spin splitting is a result of a competition between the disorder induced energy cost of flipping spins and the exchange energy gain associated with the polarized state. In this model, the single particle Zeeman energy plays no role, so that the appearance of this quantum Hall ferromagnet in the highest occupied Landau level can also be thought of as a magnetic field induced Stoner transition.

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          Author and article information

          Journal
          21 December 2005
          Article
          10.1103/PhysRevB.72.245325
          cond-mat/0512525
          d92a48ff-76a4-4052-9f7c-4f2ec6644c0b
          History
          Custom metadata
          Phys. Rev. B 72, 245325 (2005)
          cond-mat.mes-hall cond-mat.str-el

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