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[1] Tuna Yildirim. Chern-Simons splitting of 2+1D gauge theories. Proceedings of Symposia in Pure Mathematics 93 233-243.
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[2] Amir-Kian Kashani-Poor. AGT and the Topological String. Proceedings of Symposia in Pure Mathematics 90 319-325.
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[3] Constantinos Papageorgakis and Andrew B. Royston. Instanton-soliton loops in 5D super-Yang-Mills. Proceedings of Symposia in Pure Mathematics 88 351-360.
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[4] Shihshu Walter Wei. Comparison Theorems in Riemannian Geometry with Applications. Contemporary Mathematics 674 (2016) 185-209.
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[5] Kyungwoo Song. Improved existence results of solutions to the gravitational Maxwell gauged $O(3)$ sigma model. Proc. Amer. Math. Soc. 144 (2016) 3499-3505.
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[6] Andrei Okounkov. Limit shapes, real and imagined. Bull. Amer. Math. Soc. 53 (2016) 187-216.
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[7] Rafe Mazzeo and Edward Witten. The Nahm Pole Boundary Condition. Contemporary Mathematics 621 (2014) 171-226.
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[8] Giovanni Felder and David Kazhdan; with an appendix by Tomer M. Schlank. The classical master equation. Contemporary Mathematics 610 (2014) 79-137.
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[9] Dan-Andrei Geba and Daniel da Silva. On the regularity of the $2+1$ dimensional equivariant Skyrme model. Proc. Amer. Math. Soc. 141 (2013) 2105-2115.
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[10] R. V. Pal’velev. Justification of the adiabatic principle in the Abelian Higgs model. Trans. Moscow Math. Soc. 72 (2011) 219-244.
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[11] Kevin Costello. Renormalization and Effective Field Theory. Math. Surveys Monogr. 170 (2011) MR 2778558.
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[12] D. Auckly, L. Kapitanski and J. M. Speight. Geometry and analysis in nonlinear sigma models. St. Petersburg Math. J. 18 (2007) 1-19. MR 2225211.
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[13] The regularized causal perturbation theory. AMS/IP Studies in Advanced Mathematics 35 (2006) 233-247.
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[14] Connection to the Fock space formalism. AMS/IP Studies in Advanced Mathematics 35 (2006) 199-201.
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[15] Normalization of chiral fermions. AMS/IP Studies in Advanced Mathematics 35 (2006) 207-232.
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[16] The dynamical gauge group. AMS/IP Studies in Advanced Mathematics 35 (2006) 149-165.
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[17] Some formulas of the light-cone expansion. AMS/IP Studies in Advanced Mathematics 35 (2006) 203-206.
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[18] The Fermionic projector in the continuum. AMS/IP Studies in Advanced Mathematics 35 (2006) 29-69.
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[19] The principle of the Fermionic projector--A new mathematical model of space-time. AMS/IP Studies in Advanced Mathematics 35 (2006) 1-5.
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[20] Preliminaries. AMS/IP Studies in Advanced Mathematics 35 (2006) 7-28.
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[21] The commutator $[P,Q]$. AMS/IP Studies in Advanced Mathematics 35 (2006) 259-280.
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[22] Linear independence of the basic fractions. AMS/IP Studies in Advanced Mathematics 35 (2006) 249-257.
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[23] The continuum limit. AMS/IP Studies in Advanced Mathematics 35 (2006) 89-122.
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[24] The effective gauge group. AMS/IP Studies in Advanced Mathematics 35 (2006) 189-198.
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[25] Perturbation calculation for the spectral decomposition of $P(x,y) P(y,x)$. AMS/IP Studies in Advanced Mathematics 35 (2006) 281-293.
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[26] The principle of the Fermionic projector. AMS/IP Studies in Advanced Mathematics 35 (2006) 71-88.
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[27] Felix Finster. The Principle of the Fermionic Projector. AMS/IP Studies in Advanced Mathematics 35 (2006) MR MR2200689.
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[28] The Euler-Lagrange equations in the vacuum. AMS/IP Studies in Advanced Mathematics 35 (2006) 123-148.
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[29] Spontaneous block formation. AMS/IP Studies in Advanced Mathematics 35 (2006) 167-187.
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[30] Jongmin Han. Asymptotic limit for condensate solutions in the Abelian Chern-Simons Higgs model II. Proc. Amer. Math. Soc. 131 (2003) 3827-3832. MR 1999930.
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Results: 1 to 30 of 47 found      Go to page: 1 2