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2016 | OriginalPaper | Buchkapitel

Fivebranes and 4-Manifolds

verfasst von : Abhijit Gadde, Sergei Gukov, Pavel Putrov

Erschienen in: Arbeitstagung Bonn 2013

Verlag: Springer International Publishing

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Abstract

We describe rules for building 2d theories labeled by 4-manifolds. Using the proposed dictionary between building blocks of 4-manifolds and 2d \(\mathcal{N} = (0,2)\) theories, we obtain a number of results, which include new 3d \(\mathcal{N} = 2\) theories T[M 3] associated with rational homology spheres and new results for Vafa–Witten partition functions on 4-manifolds. In particular, we point out that the gluing measure for the latter is precisely the superconformal index of 2d (0, 2) vector multiplet and relate the basic building blocks with coset branching functions. We also offer a new look at the fusion of defect lines/walls, and a physical interpretation of the 4d and 3d Kirby calculus as dualities of 2d \(\mathcal{N} = (0,2)\) theories and 3d \(\mathcal{N} = 2\) theories, respectively.

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Fußnoten
1
That is, detQ = ±1.
 
2
Note, this cannot be deduced from the Rokhlin’s theorem as in the case of the E 8 manifold.
 
3
Sometimes, to avoid clutter, we suppress the choice of the gauge group, G, which in most of our applications will be either G = U(N) or G = SU(N) for some N ≥ 1. It would be interesting to see if generalization to G of Cartan type D or E leads to new phenomena. We will not aim to do this analysis here.
 
4
Recall, that a free Fermi multiplet contributes to the central charge (c L , c R ) = (1, 0).
 
5
Another nice property of such 4-manifolds is that they admit an achiral Lefschetz fibration over the disk [Har79].
 
6
But not all! See Fig. 3 for an instructive (counter)example.
 
7
Depending on the context, sometimes M 3 will refer to a single component of the boundary.
 
8
While this problem has been successfully solved for a large class of 3-manifolds [DGG1, CCV, DGG2], unfortunately it will not be enough for our purposes here and we need to resort to matching M 3 with T[M 3] based on identification of vacua, as was originally proposed in [DGH11]. One reason is that the methods of loc. cit. work best for 3-manifolds with sufficiently large boundary and/or fundamental group, whereas in our present context M 3 is itself a boundary and, in many cases, is a rational homology sphere. As we shall see below, 3d \(\mathcal{N} = 2\) theories T[M 3] seem to be qualitatively different in these two cases; typically, they are (deformations of) superconformal theories in the former case and massive 3d \(\mathcal{N} = 2\) theories in the latter. Another, more serious issue is that 3d theories T[M 3] constructed in [DGG1] do not account for all flat connections on M 3, which will be crucial in our applications below. This second issue can be avoided by considering larger 3d theories T (ref)[M 3] that have to do with refinement/categorification and mix all branches of flat connections [FGSA, FGP13]. Pursuing this approach should lead to new relations with rich algebraic structure and functoriality of knot homologies.
 
9
The converse is not true since some line defects in 2d come from line operators in 3d.
 
10
Explaining how to do this is precisely the goal of the present section.
 
11
Note, in [VW94] the symmetry group U(1) U is enhanced to the global symmetry group SU(2) U due to larger R-symmetry of the starting point.
 
12
When M 4 is non-compact χ(M 4) should be replaced by the regularized Euler characteristic, and when G = U(N) one needs to remove by hand the zero-mode to ensure that the partition function does not vanish identically.
 
13
Here and in what follows the instanton number is not necessarily an integer.
 
14
Let us note that H 2(M 4 +) ≠ H 2(B) ⊕ H 2(M 4 ). However, the lattice H 2(M 4 +) can be obtained from the lattice H 2(B) ⊕ H 2(M 4 ) by the so-called gluing procedure that will be described in detail shortly.
 
15
Such lift exists because the manifold is Spin c .
 
Literatur
[Aus90]
[Ass96]
Zurück zum Zitat T. Asselmeyer, Generation of source terms in general relativity by differential structures. Classical Quantum Gravity 14, 749–758 (1997). [ gr-qc/9610009 ] T. Asselmeyer, Generation of source terms in general relativity by differential structures. Classical Quantum Gravity 14, 749–758 (1997). [ gr-qc/9610009 ]
[Akb12]
Zurück zum Zitat S. Akbulut, 4-Manifolds. Oxford Graduate Texts in Mathematics, vol. 25 (Oxford University Press, Oxford, 2016) S. Akbulut, 4-Manifolds. Oxford Graduate Texts in Mathematics, vol. 25 (Oxford University Press, Oxford, 2016)
[AG04]
Zurück zum Zitat B.S. Acharya, S. Gukov, M theory and singularities of exceptional holonomy manifolds. Phys. Rep. 392, 121–189 (2004). [ hep-th/0409191 ] B.S. Acharya, S. Gukov, M theory and singularities of exceptional holonomy manifolds. Phys. Rep. 392, 121–189 (2004). [ hep-th/0409191 ]
[AV01]
Zurück zum Zitat B.S. Acharya, C. Vafa, On domain walls of N=1 supersymmetric Yang-Mills in four-dimensions (2001). [ hep-th/0103011 ] B.S. Acharya, C. Vafa, On domain walls of N=1 supersymmetric Yang-Mills in four-dimensions (2001). [ hep-th/0103011 ]
[ABT10]
Zurück zum Zitat L.F. Alday, F. Benini, Y. Tachikawa, Liouville/Toda central charges from M5-branes. Phys. Rev. Lett. 105, 141601 (2010). [ arXiv:0909.4776 ] L.F. Alday, F. Benini, Y. Tachikawa, Liouville/Toda central charges from M5-branes. Phys. Rev. Lett. 105, 141601 (2010). [ arXiv:0909.4776 ]
[AGT10]
Zurück zum Zitat L.F. Alday, D. Gaiotto, Y. Tachikawa, Liouville correlation functions from four-dimensional Gauge theories. Lett. Math. Phys. 91, 167–197 (2010). [ arXiv:0906.3219 ] L.F. Alday, D. Gaiotto, Y. Tachikawa, Liouville correlation functions from four-dimensional Gauge theories. Lett. Math. Phys. 91, 167–197 (2010). [ arXiv:0906.3219 ]
[APS73]
[AOSV05]
Zurück zum Zitat M. Aganagic, H. Ooguri, N. Saulina, C. Vafa, Black holes, q-deformed 2d Yang-Mills, and non-perturbative topological strings. Nucl. Phys. B715, 304–348 (2005). [ hep-th/0411280 ] M. Aganagic, H. Ooguri, N. Saulina, C. Vafa, Black holes, q-deformed 2d Yang-Mills, and non-perturbative topological strings. Nucl. Phys. B715, 304–348 (2005). [ hep-th/0411280 ]
[BB13]
Zurück zum Zitat F. Benini, N. Bobev, Two-dimensional SCFTs from wrapped Branes and c-extremization. J. High Energy Phys. 1306, 005 (2013). [ arXiv:1302.4451 ] F. Benini, N. Bobev, Two-dimensional SCFTs from wrapped Branes and c-extremization. J. High Energy Phys. 1306, 005 (2013). [ arXiv:1302.4451 ]
[BM09]
Zurück zum Zitat C. Bachas, S. Monnier, Defect loops in gauged Wess-Zumino-Witten models. J. High Energy Phys. 1002, 003 (2010). [ arXiv:0911.1562 ] C. Bachas, S. Monnier, Defect loops in gauged Wess-Zumino-Witten models. J. High Energy Phys. 1002, 003 (2010). [ arXiv:0911.1562 ]
[BR07]
Zurück zum Zitat I. Brunner, D. Roggenkamp, B-type defects in Landau-Ginzburg models. J. High Energy Phys. 0708, 093 (2007). [ arXiv:0707.0922 ] I. Brunner, D. Roggenkamp, B-type defects in Landau-Ginzburg models. J. High Energy Phys. 0708, 093 (2007). [ arXiv:0707.0922 ]
[BT96]
Zurück zum Zitat M. Blau, G. Thompson, Aspects of N(T) ≥ 2 topological gauge theories and D-branes. Nucl. Phys. B492, 545–590 (1997). [ hep-th/9612143 ] M. Blau, G. Thompson, Aspects of N(T) ≥ 2 topological gauge theories and D-branes. Nucl. Phys. B492, 545–590 (1997). [ hep-th/9612143 ]
[BT97]
Zurück zum Zitat M. Blau, G. Thompson, Euclidean SYM theories by time reduction and special holonomy manifolds. Phys. Lett. B415, 242–252 (1997). [ hep-th/9706225 ] M. Blau, G. Thompson, Euclidean SYM theories by time reduction and special holonomy manifolds. Phys. Lett. B415, 242–252 (1997). [ hep-th/9706225 ]
[BDP]
Zurück zum Zitat C. Beem, T. Dimofte, S. Pasquetti, Holomorphic blocks in three dimensions. J. High Energy Phys. 2014 (12), Article 177, 118 pp. (2014) C. Beem, T. Dimofte, S. Pasquetti, Holomorphic blocks in three dimensions. J. High Energy Phys. 2014 (12), Article 177, 118 pp. (2014)
[BJR08]
Zurück zum Zitat I. Brunner, H. Jockers, D. Roggenkamp, Defects and D-Brane monodromies. Adv. Theor. Math. Phys. 13, 1077–1135 (2009). [ arXiv:0806.4734 ] I. Brunner, H. Jockers, D. Roggenkamp, Defects and D-Brane monodromies. Adv. Theor. Math. Phys. 13, 1077–1135 (2009). [ arXiv:0806.4734 ]
[BVS95]
Zurück zum Zitat M. Bershadsky, C. Vafa, V. Sadov, D-branes and topological field theories. Nucl. Phys. B463, 420–434 (1996). [ hep-th/9511222 ] M. Bershadsky, C. Vafa, V. Sadov, D-branes and topological field theories. Nucl. Phys. B463, 420–434 (1996). [ hep-th/9511222 ]
[BdDO02]
Zurück zum Zitat C. Bachas, J. de Boer, R. Dijkgraaf, H. Ooguri, Permeable conformal walls and holography. J. High Energy Phys. 0206, 027 (2002). [ hep-th/0111210 ] C. Bachas, J. de Boer, R. Dijkgraaf, H. Ooguri, Permeable conformal walls and holography. J. High Energy Phys. 0206, 027 (2002). [ hep-th/0111210 ]
[BEHT13]
Zurück zum Zitat F. Benini, R. Eager, K. Hori, Y. Tachikawa, Elliptic genera of two-dimensional N = 2 gauge theories with rank-one gauge groups. Lett. Math. Phys. 104 (4), 465–493 (2014) F. Benini, R. Eager, K. Hori, Y. Tachikawa, Elliptic genera of two-dimensional N = 2 gauge theories with rank-one gauge groups. Lett. Math. Phys. 104 (4), 465–493 (2014)
[BHKK99]
Zurück zum Zitat O. Bergman, A. Hanany, A. Karch, B. Kol, Branes and supersymmetry breaking in three-dimensional gauge theories. J. High Energy Phys. 9910, 036 (1999). [ hep-th/9908075 ] O. Bergman, A. Hanany, A. Karch, B. Kol, Branes and supersymmetry breaking in three-dimensional gauge theories. J. High Energy Phys. 9910, 036 (1999). [ hep-th/9908075 ]
[BJKZ96]
Zurück zum Zitat P. Berglund, C.V. Johnson, S. Kachru, P. Zaugg, Heterotic coset models and (0,2) string vacua. Nucl. Phys. B460, 252–298 (1996). [ hep-th/9509170 ] P. Berglund, C.V. Johnson, S. Kachru, P. Zaugg, Heterotic coset models and (0,2) string vacua. Nucl. Phys. B460, 252–298 (1996). [ hep-th/9509170 ]
[CH85]
Zurück zum Zitat C.G. Callan, J.A. Harvey, Anomalies and fermion zero modes on strings and domain walls. Nucl. Phys. B250, 427 (1985)MathSciNetCrossRef C.G. Callan, J.A. Harvey, Anomalies and fermion zero modes on strings and domain walls. Nucl. Phys. B250, 427 (1985)MathSciNetCrossRef
[CR10]
Zurück zum Zitat N. Carqueville, I. Runkel, Rigidity and defect actions in Landau-Ginzburg models. Commun. Math. Phys. 310, 135–179 (2012). [ arXiv:1006.5609 ] N. Carqueville, I. Runkel, Rigidity and defect actions in Landau-Ginzburg models. Commun. Math. Phys. 310, 135–179 (2012). [ arXiv:1006.5609 ]
[Don83]
Zurück zum Zitat S.K. Donaldson, An application of gauge theory to four-dimensional topology. J. Differ. Geom. 18, 279–315 (1983)MathSciNetMATH S.K. Donaldson, An application of gauge theory to four-dimensional topology. J. Differ. Geom. 18, 279–315 (1983)MathSciNetMATH
[DS08]
Zurück zum Zitat R. Dijkgraaf, P. Sulkowski, Instantons on ALE spaces and orbifold partitions. J. High Energy Phys. 0803, 013 (2008). [ arXiv:0712.1427 ] R. Dijkgraaf, P. Sulkowski, Instantons on ALE spaces and orbifold partitions. J. High Energy Phys. 0803, 013 (2008). [ arXiv:0712.1427 ]
[DS10]
Zurück zum Zitat J. Distler, E. Sharpe, Heterotic compactifications with principal bundles for general groups and general levels. Adv. Theor. Math. Phys. 14, 335–398 (2010). [ hep-th/0701244 ] J. Distler, E. Sharpe, Heterotic compactifications with principal bundles for general groups and general levels. Adv. Theor. Math. Phys. 14, 335–398 (2010). [ hep-th/0701244 ]
[DGG1]
[DGG13]
[DGH11]
Zurück zum Zitat T. Dimofte, S. Gukov, L. Hollands, Vortex counting and Lagrangian 3-manifolds. Lett. Math. Phys. 98, 225–287 (2011). [ arXiv:1006.0977 ] T. Dimofte, S. Gukov, L. Hollands, Vortex counting and Lagrangian 3-manifolds. Lett. Math. Phys. 98, 225–287 (2011). [ arXiv:1006.0977 ]
[DVV02]
[DHSV07]
Zurück zum Zitat R. Dijkgraaf, L. Hollands, P. Sulkowski, C. Vafa, Supersymmetric gauge theories, intersecting Branes and free fermions. J. High Energy Phys. 0802, 106 (2008). [ arXiv:0709.4446 ] R. Dijkgraaf, L. Hollands, P. Sulkowski, C. Vafa, Supersymmetric gauge theories, intersecting Branes and free fermions. J. High Energy Phys. 0802, 106 (2008). [ arXiv:0709.4446 ]
[dDHKM02]
Zurück zum Zitat J. de Boer, R. Dijkgraaf, K. Hori, A. Keurentjes, J. Morgan, et al., Triples, fluxes, and strings. Adv. Theor. Math. Phys. 4, 995–1186 (2002). [ hep-th/0103170 ] J. de Boer, R. Dijkgraaf, K. Hori, A. Keurentjes, J. Morgan, et al., Triples, fluxes, and strings. Adv. Theor. Math. Phys. 4, 995–1186 (2002). [ hep-th/0103170 ]
[Fre82]
Zurück zum Zitat M. Freedman, The topology of four dimensional manifolds. J. Differ. Geom. 17, 357–453 (1982)MathSciNetMATH M. Freedman, The topology of four dimensional manifolds. J. Differ. Geom. 17, 357–453 (1982)MathSciNetMATH
[FH90]
Zurück zum Zitat M. Furuta, Y. Hashimoto, Invariant instantons on S 4. J. Fac. Sci. Univ. Tokyo Sect. IA Math. 37 (3), 585–600 (1990)MathSciNetMATH M. Furuta, Y. Hashimoto, Invariant instantons on S 4. J. Fac. Sci. Univ. Tokyo Sect. IA Math. 37 (3), 585–600 (1990)MathSciNetMATH
[FW99]
[FGP13]
Zurück zum Zitat H. Fuji, S. Gukov, P. Sulkowski, Super-a-polynomial for knots and BPS states. Nucl. Phys. B867, 506–546 (2013). [ arXiv:1205.1515 ] H. Fuji, S. Gukov, P. Sulkowski, Super-a-polynomial for knots and BPS states. Nucl. Phys. B867, 506–546 (2013). [ arXiv:1205.1515 ]
[FSV12]
Zurück zum Zitat J. Fuchs, C. Schweigert, A. Velentino, Bicategories for boundary conditions and for surface defects in 3-d TFT. Commun. Math. Phys. 321 (2), 543–575 (2013)MathSciNetCrossRefMATH J. Fuchs, C. Schweigert, A. Velentino, Bicategories for boundary conditions and for surface defects in 3-d TFT. Commun. Math. Phys. 321 (2), 543–575 (2013)MathSciNetCrossRefMATH
[FGSA]
Zurück zum Zitat H. Fuji, S. Gukov, P. Sulkowski, H. Awata, Volume conjecture: refined and categorified. Adv. Theor. Math. Phys. 16 (2), 1669–1777 (2012)MathSciNetMATH H. Fuji, S. Gukov, P. Sulkowski, H. Awata, Volume conjecture: refined and categorified. Adv. Theor. Math. Phys. 16 (2), 1669–1777 (2012)MathSciNetMATH
[FGSS]
Zurück zum Zitat H. Fuji, S. Gukov, M. Stos̆ić, P. Sulkowski, 3d analogs of Argyres-Douglas theories and knot homologies. J. High Energy Phys. 2013, 175 (2003) H. Fuji, S. Gukov, M. Stos̆ić, P. Sulkowski, 3d analogs of Argyres-Douglas theories and knot homologies. J. High Energy Phys. 2013, 175 (2003)
[Guk05]
Zurück zum Zitat S. Gukov, Three-dimensional quantum gravity, Chern-Simons theory, and the A-polynomial. Commun. Math. Phys. 255 (3), 577–627 (2005). [ hep-th/0306165 ] S. Gukov, Three-dimensional quantum gravity, Chern-Simons theory, and the A-polynomial. Commun. Math. Phys. 255 (3), 577–627 (2005). [ hep-th/0306165 ]
[Guk07]
[GL91]
Zurück zum Zitat T. Gannon, C. Lam, Gluing and shifting lattice constructions and rational equivalence. Rev. Math. Phys. 3 (03), 331–369 (1991)MathSciNetCrossRefMATH T. Gannon, C. Lam, Gluing and shifting lattice constructions and rational equivalence. Rev. Math. Phys. 3 (03), 331–369 (1991)MathSciNetCrossRefMATH
[GL92]
Zurück zum Zitat T. Gannon, C. Lam, Lattices and \(\Theta\)-function identities. I: Theta constants. J. Math. Phys. 33, 854 (1992)MathSciNetMATH T. Gannon, C. Lam, Lattices and \(\Theta\)-function identities. I: Theta constants. J. Math. Phys. 33, 854 (1992)MathSciNetMATH
[GL92]
Zurück zum Zitat T. Gannon, C. Lam, Lattices and θ-function identities. II: Theta series. J. Math. Phys. 33, 871 (1992)MathSciNetMATH T. Gannon, C. Lam, Lattices and θ-function identities. II: Theta series. J. Math. Phys. 33, 871 (1992)MathSciNetMATH
[GK02]
Zurück zum Zitat J.P. Gauntlett, N. Kim, M five-branes wrapped on supersymmetric cycles. 2.. Phys. Rev. D65, 086003 (2002). [ hep-th/0109039 ] J.P. Gauntlett, N. Kim, M five-branes wrapped on supersymmetric cycles. 2.. Phys. Rev. D65, 086003 (2002). [ hep-th/0109039 ]
[GK09]
[GP15]
[GS99]
Zurück zum Zitat R.E. Gompf, A.I. Stipsicz, 4-manifolds and Kirby calculus. Graduate Studies in Mathematics, vol. 20 (American Mathematical Society, Providence, RI, 1999) R.E. Gompf, A.I. Stipsicz, 4-manifolds and Kirby calculus. Graduate Studies in Mathematics, vol. 20 (American Mathematical Society, Providence, RI, 1999)
[GW09]
Zurück zum Zitat D. Gaiotto, E. Witten, Supersymmetric boundary conditions in N=4 super Yang-Mills theory. J. Stat. Phys. 135, 789–855 (2009). [ arXiv:0804.2902 ] D. Gaiotto, E. Witten, Supersymmetric boundary conditions in N=4 super Yang-Mills theory. J. Stat. Phys. 135, 789–855 (2009). [ arXiv:0804.2902 ]
[GGP13]
Zurück zum Zitat A. Gadde, S. Gukov, P.J. Putrov, Walls, lines, and spectral dualities in 3d Gauge theories. J. High Energy Phys. 2014, 47 (2014)CrossRef A. Gadde, S. Gukov, P.J. Putrov, Walls, lines, and spectral dualities in 3d Gauge theories. J. High Energy Phys. 2014, 47 (2014)CrossRef
[GKW00]
Zurück zum Zitat J.P. Gauntlett, N. Kim, D. Waldram, M Five-branes wrapped on supersymmetric cycles. Phys. Rev. D63, 126001 (2001). [ hep-th/0012195 ] J.P. Gauntlett, N. Kim, D. Waldram, M Five-branes wrapped on supersymmetric cycles. Phys. Rev. D63, 126001 (2001). [ hep-th/0012195 ]
[GMN10]
Zurück zum Zitat D. Gaiotto, G.W. Moore, A. Neitzke, Four-dimensional wall-crossing via three-dimensional field theory. Commun. Math. Phys. 299, 163–224 (2010). [ arXiv:0807.4723 ] D. Gaiotto, G.W. Moore, A. Neitzke, Four-dimensional wall-crossing via three-dimensional field theory. Commun. Math. Phys. 299, 163–224 (2010). [ arXiv:0807.4723 ]
[GPS93]
Zurück zum Zitat S.B. Giddings, J. Polchinski, A. Strominger, Four-dimensional black holes in string theory. Phys. Rev. D48, 5784–5797 (1993). [ hep-th/9305083 ] S.B. Giddings, J. Polchinski, A. Strominger, Four-dimensional black holes in string theory. Phys. Rev. D48, 5784–5797 (1993). [ hep-th/9305083 ]
[GST02]
Zurück zum Zitat S. Gukov, J. Sparks, D. Tong, Conifold transitions and five-brane condensation in M theory on spin(7) manifolds. Classical Quantum Gravity 20, 665–706 (2003). [ hep-th/0207244 ] S. Gukov, J. Sparks, D. Tong, Conifold transitions and five-brane condensation in M theory on spin(7) manifolds. Classical Quantum Gravity 20, 665–706 (2003). [ hep-th/0207244 ]
[GSW87]
Zurück zum Zitat M.B. Green, J. Schwarz, E. Witten, Superstring Theory. vol. 1: Introduction, 1st edn. (Cambridge, New York, 1987) M.B. Green, J. Schwarz, E. Witten, Superstring Theory. vol. 1: Introduction, 1st edn. (Cambridge, New York, 1987)
[GVW00]
Zurück zum Zitat S. Gukov, C. Vafa, E. Witten, CFT’s from Calabi-Yau four folds. Nucl. Phys. B584, 69–108 (2000). [ hep-th/9906070 ] S. Gukov, C. Vafa, E. Witten, CFT’s from Calabi-Yau four folds. Nucl. Phys. B584, 69–108 (2000). [ hep-th/9906070 ]
[GRRY11]
Zurück zum Zitat A. Gadde, L. Rastelli, S.S. Razamat, W. Yan, The 4d superconformal index from q-deformed 2d Yang-Mills. Phys. Rev. Lett. 106, 241602 (2011). [ arXiv:1104.3850 ] A. Gadde, L. Rastelli, S.S. Razamat, W. Yan, The 4d superconformal index from q-deformed 2d Yang-Mills. Phys. Rev. Lett. 106, 241602 (2011). [ arXiv:1104.3850 ]
[Har79]
Zurück zum Zitat J.L. Harer, Pencils of Curves on 4-Manifolds (ProQuest LLC, Ann Arbor, MI, 1979). Thesis (Ph.D.)-University of California, Berkeley J.L. Harer, Pencils of Curves on 4-Manifolds (ProQuest LLC, Ann Arbor, MI, 1979). Thesis (Ph.D.)-University of California, Berkeley
[HW97]
Zurück zum Zitat A. Hanany, E. Witten, Type IIB superstrings, BPS monopoles, and three-dimensional gauge dynamics. Nucl. Phys. B492, 152–190 (1997). [ hep-th/9611230 ] A. Hanany, E. Witten, Type IIB superstrings, BPS monopoles, and three-dimensional gauge dynamics. Nucl. Phys. B492, 152–190 (1997). [ hep-th/9611230 ]
[HW04]
[Joh95]
[KP]
Zurück zum Zitat V.G. Kac, D.H. Petersen, Infinite-dimensional Lie algebras, theta functions and modular forms. Adv. Math. 53 (2), 125–264 (1984)MathSciNetCrossRefMATH V.G. Kac, D.H. Petersen, Infinite-dimensional Lie algebras, theta functions and modular forms. Adv. Math. 53 (2), 125–264 (1984)MathSciNetCrossRefMATH
[KS10]
Zurück zum Zitat A. Kapustin, N. Saulina, Surface operators in 3d topological field theory and 2d rational conformal field theory, in Mathematical Foundations of Quantum Field Theory and Perturbative String Theory. Proceedings of Symposia in Pure Mathematics, vol. 83 (American Mathematical Society, Providence, 2011), pp. 175–198 A. Kapustin, N. Saulina, Surface operators in 3d topological field theory and 2d rational conformal field theory, in Mathematical Foundations of Quantum Field Theory and Perturbative String Theory. Proceedings of Symposia in Pure Mathematics, vol. 83 (American Mathematical Society, Providence, 2011), pp. 175–198
[KS11]
Zurück zum Zitat A. Kapustin, N. Saulina, Topological boundary conditions in abelian Chern-Simons theory. Nucl. Phys. B845, 393–435 (2011). [ arXiv:1008.0654 ] A. Kapustin, N. Saulina, Topological boundary conditions in abelian Chern-Simons theory. Nucl. Phys. B845, 393–435 (2011). [ arXiv:1008.0654 ]
[KW07]
Zurück zum Zitat A. Kapustin, E. Witten, Electric-magnetic duality and the geometric Langlands program. Commun. Num. Theor. Phys. 1, 1–236 (2007). [ hep-th/0604151 ] A. Kapustin, E. Witten, Electric-magnetic duality and the geometric Langlands program. Commun. Num. Theor. Phys. 1, 1–236 (2007). [ hep-th/0604151 ]
[KW13]
Zurück zum Zitat A. Kapustin, B. Willett, Wilson loops in supersymmetric Chern-Simons-matter theories and duality (2007). [ arXiv:1302.2164 ] A. Kapustin, B. Willett, Wilson loops in supersymmetric Chern-Simons-matter theories and duality (2007). [ arXiv:1302.2164 ]
[KOO99]
Zurück zum Zitat T. Kitao, K. Ohta, N. Ohta, Three-dimensional gauge dynamics from brane configurations with (p,q) - five-brane. Nucl. Phys. B539, 79–106 (1999). [ hep-th/9808111 ] T. Kitao, K. Ohta, N. Ohta, Three-dimensional gauge dynamics from brane configurations with (p,q) - five-brane. Nucl. Phys. B539, 79–106 (1999). [ hep-th/9808111 ]
[Loc87]
Zurück zum Zitat R. Lockhart, Fredholm, Hodge and Liouville theorems on noncompact manifolds. Trans. Am. Math. Soc. 301 (1), 1–35 (1987)MathSciNetCrossRef R. Lockhart, Fredholm, Hodge and Liouville theorems on noncompact manifolds. Trans. Am. Math. Soc. 301 (1), 1–35 (1987)MathSciNetCrossRef
[LP72]
Zurück zum Zitat F. Laudenbach, V. Poénaru, A note on 4-dimensional handlebodies. Bull. Soc. Math. Fr. 100, 337–344 (1972)MathSciNetMATH F. Laudenbach, V. Poénaru, A note on 4-dimensional handlebodies. Bull. Soc. Math. Fr. 100, 337–344 (1972)MathSciNetMATH
[Mar95]
[MNVW98]
Zurück zum Zitat J. Minahan, D. Nemeschansky, C. Vafa, N. Warner, E strings and N=4 topological Yang-Mills theories. Nucl. Phys. B527, 581–623 (1998). [ hep-th/9802168 ] J. Minahan, D. Nemeschansky, C. Vafa, N. Warner, E strings and N=4 topological Yang-Mills theories. Nucl. Phys. B527, 581–623 (1998). [ hep-th/9802168 ]
[MQSS12]
Zurück zum Zitat I.V. Melnikov, C. Quigley, S. Sethi, M. Stern, Target spaces from Chiral gauge theories. J. High Energy Phys. 1302, 111 (2013). [ arXiv:1212.1212 ] I.V. Melnikov, C. Quigley, S. Sethi, M. Stern, Target spaces from Chiral gauge theories. J. High Energy Phys. 1302, 111 (2013). [ arXiv:1212.1212 ]
[Nak94]
[NRXS12]
Zurück zum Zitat S. Nawata, P. Ramadevi, Zodinmawia, X. Sun, Super-A-polynomials for twist knots. J. High Energy Phys. 1211, 157 (2012). [ arXiv:1209.1409 ] S. Nawata, P. Ramadevi, Zodinmawia, X. Sun, Super-A-polynomials for twist knots. J. High Energy Phys. 1211, 157 (2012). [ arXiv:1209.1409 ]
[Oht99]
Zurück zum Zitat K. Ohta, Supersymmetric index and s rule for type IIB branes. J. High Energy Phys. 9910, 006 (1999). [ hep-th/9908120 ] K. Ohta, Supersymmetric index and s rule for type IIB branes. J. High Energy Phys. 9910, 006 (1999). [ hep-th/9908120 ]
[OA97]
Zurück zum Zitat M. Oshikawa, I. Affleck, Boundary conformal field theory approach to the critical two-dimensional Ising model with a defect line. Nucl. Phys. B495, 533–582 (1997). [ cond-mat/9612187 ] M. Oshikawa, I. Affleck, Boundary conformal field theory approach to the critical two-dimensional Ising model with a defect line. Nucl. Phys. B495, 533–582 (1997). [ cond-mat/9612187 ]
[OY13]
Zurück zum Zitat T. Okazaki, S. Yamaguchi, Supersymmetric boundary conditions in 3D N = 2 theories, in String-Math 2013. Proceedings of Symposia in Pure Mathematics, vol. 88 (American Mathematical Society, Providence, 2014), pp. 343–349 T. Okazaki, S. Yamaguchi, Supersymmetric boundary conditions in 3D N = 2 theories, in String-Math 2013. Proceedings of Symposia in Pure Mathematics, vol. 88 (American Mathematical Society, Providence, 2014), pp. 343–349
[Pfe04]
[Qui79]
Zurück zum Zitat F. Quinn, Ends of maps. I. Ann. Math. (2) 110 (2), 275–331 (1979) F. Quinn, Ends of maps. I. Ann. Math. (2) 110 (2), 275–331 (1979)
[Qui82]
Zurück zum Zitat F. Quinn, Ends of maps. III. Dimensions 4 and 5. J. Differ. Geom. 17 (3), 503–521 (1982) F. Quinn, Ends of maps. III. Dimensions 4 and 5. J. Differ. Geom. 17 (3), 503–521 (1982)
[QS02]
Zurück zum Zitat T. Quella, V. Schomerus, Symmetry breaking boundary states and defect lines. J. High Energy Phys. 0206, 028 (2002). [ hep-th/0203161 ] T. Quella, V. Schomerus, Symmetry breaking boundary states and defect lines. J. High Energy Phys. 0206, 028 (2002). [ hep-th/0203161 ]
[Sav02]
[Sla09]
[Smi10]
Zurück zum Zitat A. Smilga, Witten index in supersymmetric 3d theories revisited. J. High Energy Phys. 1001, 086 (2010). [ arXiv:0910.0803 ] A. Smilga, Witten index in supersymmetric 3d theories revisited. J. High Energy Phys. 1001, 086 (2010). [ arXiv:0910.0803 ]
[SW94]
Zurück zum Zitat N. Seiberg, E. Witten, Electric - magnetic duality, monopole condensation, and confinement in N=2 supersymmetric Yang-Mills theory. Nucl. Phys. B426, 19–52 (1994). [ hep-th/9407087 ] N. Seiberg, E. Witten, Electric - magnetic duality, monopole condensation, and confinement in N=2 supersymmetric Yang-Mills theory. Nucl. Phys. B426, 19–52 (1994). [ hep-th/9407087 ]
[VW94]
[Wit93]
[Witt93]
[Wit94]
[War95]
[Wit96]
[Wit98]
Zurück zum Zitat E. Witten, Toroidal compactification without vector structure. J. High Energy Phys. 9802, 006 (1998). [ hep-th/9712028 ] E. Witten, Toroidal compactification without vector structure. J. High Energy Phys. 9802, 006 (1998). [ hep-th/9712028 ]
[Wit99]
Zurück zum Zitat E. Witten, Supersymmetric index of three-dimensional gauge theory, in The Many Faces of the Superworld (World Scientific, River Edge, 2000), pp. 156–184MATH E. Witten, Supersymmetric index of three-dimensional gauge theory, in The Many Faces of the Superworld (World Scientific, River Edge, 2000), pp. 156–184MATH
[Wit03]
Zurück zum Zitat E. Witten, SL(2,Z) action on three-dimensional conformal field theories with Abelian symmetry, in From Fields to Strings: Circumnavigating Theoretical Physics, vol. 2 (World Scientific, Singapore, 2005), pp. 1173–1200 E. Witten, SL(2,Z) action on three-dimensional conformal field theories with Abelian symmetry, in From Fields to Strings: Circumnavigating Theoretical Physics, vol. 2 (World Scientific, Singapore, 2005), pp. 1173–1200
[WA94]
Zurück zum Zitat E. Wong, I. Affleck, Tunneling in quantum wires: a boundary conformal field theory approach. Nucl. Phys. B417, 403–438 (1994)MathSciNetCrossRefMATH E. Wong, I. Affleck, Tunneling in quantum wires: a boundary conformal field theory approach. Nucl. Phys. B417, 403–438 (1994)MathSciNetCrossRefMATH
Metadaten
Titel
Fivebranes and 4-Manifolds
verfasst von
Abhijit Gadde
Sergei Gukov
Pavel Putrov
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-43648-7_7