Abstract
We classify, in a group theoretical manner, the BPS configurations in the multiple M2-brane theory recently proposed by Bagger and Lambert. We present three types of BPS equations preserving various fractions of supersymmetries: in the first type we have constant fields and the interactions are purely algebraic in nature; in the second type the equations are invariant under spatial rotation SO(2), and the fields can be time-dependent; in the third class the equations are invariant under boost SO(1,1) and provide the eleven-dimensional generalizations of the Nahm equations. The BPS equations for different number of supersymmetries exhibit the division algebra structures: octonion, quarternion or complex.
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Jeon, I., Kim, J., Kim, N., Kim, S. W., & Park, J. H. (2008). Classification of the BPS states in Bagger-Lambert theory. Journal of High Energy Physics, 2008(7). https://doi.org/10.1088/1126-6708/2008/07/056
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