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Exoflops in two dimensions

Publication ,  Journal Article
Aspinwall, PS
Published in: Journal of High Energy Physics
July 31, 2015

Abstract: An exoflop occurs in the gauged linear σ-model by varying the Kähler form so that a subspace appears to shrink to a point and then reemerge “outside” the original manifold. This occurs for K3 surfaces where a rational curve is “flopped” from inside to outside the K3 surface. We see that whether a rational curve contracts to an orbifold phase or an exoflop depends on whether this curve is a line or conic. We study how the D-brane category of the smooth K3 surface is described by the exoflop and, in particular, find the location of a massless D-brane in the exoflop limit. We relate exoflops to noncommutative resolutions.

Duke Scholars

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Published In

Journal of High Energy Physics

DOI

EISSN

1029-8479

Publication Date

July 31, 2015

Volume

2015

Issue

7

Related Subject Headings

  • Nuclear & Particles Physics
  • 5107 Particle and high energy physics
  • 5106 Nuclear and plasma physics
  • 4902 Mathematical physics
  • 0206 Quantum Physics
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
  • 0105 Mathematical Physics
 

Citation

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Aspinwall, P. S. (2015). Exoflops in two dimensions. Journal of High Energy Physics, 2015(7). https://doi.org/10.1007/JHEP07(2015)104
Aspinwall, P. S. “Exoflops in two dimensions.” Journal of High Energy Physics 2015, no. 7 (July 31, 2015). https://doi.org/10.1007/JHEP07(2015)104.
Aspinwall PS. Exoflops in two dimensions. Journal of High Energy Physics. 2015 Jul 31;2015(7).
Aspinwall, P. S. “Exoflops in two dimensions.” Journal of High Energy Physics, vol. 2015, no. 7, July 2015. Scopus, doi:10.1007/JHEP07(2015)104.
Aspinwall PS. Exoflops in two dimensions. Journal of High Energy Physics. 2015 Jul 31;2015(7).
Journal cover image

Published In

Journal of High Energy Physics

DOI

EISSN

1029-8479

Publication Date

July 31, 2015

Volume

2015

Issue

7

Related Subject Headings

  • Nuclear & Particles Physics
  • 5107 Particle and high energy physics
  • 5106 Nuclear and plasma physics
  • 4902 Mathematical physics
  • 0206 Quantum Physics
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
  • 0105 Mathematical Physics