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[1] Yi-Nan Wang,et al. Coulomb and Higgs branches from canonical singularities. Part I. Hypersurfaces with smooth Calabi-Yau resolutions , 2021, Journal of High Energy Physics.
[2] F. Carta,et al. Conformal manifolds and 3d mirrors of Argyres-Douglas theories , 2021, Journal of High Energy Physics.
[3] Tom Rudelius,et al. Non-invertible global symmetries and completeness of the spectrum , 2021, Journal of High Energy Physics.
[4] Sakura Schafer-Nameki,et al. 1-form symmetries of 4d N=2 class S theories , 2021, SciPost Physics.
[5] Yi-Nan Wang,et al. 5d and 4d SCFTs: canonical singularities, trinions and S-dualities , 2020, Journal of High Energy Physics.
[6] Simone Giacomelli,et al. New aspects of Argyres-Douglas theories and their dimensional reduction , 2020, Journal of High Energy Physics.
[7] Sergei Gukov,et al. Generalized global symmetries of T[M] theories. Part I , 2020, Journal of High Energy Physics.
[8] Po-Shen Hsin,et al. Generalized Global Symmetries of T[M] Theories. I , 2020 .
[9] Yi-Nan Wang,et al. Coulomb and Higgs branches from canonical singularities. Part 0 , 2020, Journal of High Energy Physics.
[10] Saghar Hosseini,et al. Higher form symmetries of Argyres-Douglas theories , 2020, Journal of High Energy Physics.
[11] Gabi Zafrir. An N=1 Lagrangian for an N=3 SCFT , 2020, 2007.14955.
[12] Y. Tanizaki,et al. Modified instanton sum in QCD and higher-groups , 2019, Journal of High Energy Physics.
[13] Julius F. Grimminger,et al. The Higgs mechanism — Hasse diagrams for symplectic singularities , 2019, Journal of High Energy Physics.
[14] M. Buican,et al. Peculiar index relations, 2D TQFT, and universality of SUSY enhancement , 2019, Journal of High Energy Physics.
[15] M. Buican,et al. Flowing from 16 to 32 supercharges , 2018, Journal of High Energy Physics.
[16] S. Giacomelli. RG flows with supersymmetry enhancement and geometric engineering , 2017, Journal of High Energy Physics.
[17] S. Benvenuti,et al. Supersymmetric Gauge Theories with Decoupled Operators and Chiral Ring Stability. , 2017, Physical review letters.
[18] M. Martone,et al. 4d $\cN$=2 theories with disconnected gauge groups , 2016 .
[19] Yongchao Lü,et al. Geometric constraints on the space of N=2 SCFTs. Part III: enhanced Coulomb branches and central charges , 2016, 1609.04404.
[20] Ian C. Davenport,et al. Landau-Ginzburg skeletons , 2016, 1608.04259.
[21] K. Maruyoshi,et al. N=1 Deformations and RG Flows of N=2 SCFTs , 2016, 1607.04281.
[22] K. Maruyoshi,et al. Enhancement of Supersymmetry via Renormalization Group Flow and the Superconformal Index. , 2016, Physical review letters.
[23] M. Buican,et al. Conformal manifolds in four dimensions and chiral algebras , 2016, 1603.00887.
[24] M. Martone,et al. Geometric constraints on the space of N=2 SCFTs II: Construction of special K\"ahler geometries and RG flows , 2015, 1601.00011.
[25] N. Nekrasov. BPS/CFT correspondence: non-perturbative Dyson-Schwinger equations and qq-characters , 2015, 1512.05388.
[26] O. Aharony,et al. On four dimensional N = 3 superconformal theories , 2015, 1512.03524.
[27] M. Buican,et al. Argyres-Douglas theories, the Macdonald index, and an RG inequality , 2015, 1509.05402.
[28] Y. Wang,et al. Classification of Argyres-Douglas theories from M5 branes , 2015, 1509.00847.
[29] M. Buican,et al. Argyres–Douglas theories, S1 reductions, and topological symmetries , 2015, 1505.06205.
[30] M. Buican,et al. On the superconformal index of Argyres–Douglas theories , 2015, 1505.05884.
[31] M. Martone,et al. Geometric constraints on the space of N=2 SCFTs I: physical constraints on relevant deformations , 2015, 1505.04814.
[32] C. Vafa,et al. Geometric Engineering, Mirror Symmetry and 6d (1,0) -> 4d, N=2 , 2015, 1504.08348.
[33] Nathan Seiberg,et al. Generalized global symmetries , 2014, 1412.5148.
[34] Z. Komargodski,et al. Sphere partition functions and the Zamolodchikov metric , 2014, 1405.7271.
[35] L. Rastelli,et al. Infinite Chiral Symmetry in Four Dimensions , 2013, 1312.5344.
[36] M. Buican. Minimal distances between SCFTs , 2013, 1311.1276.
[37] Yuji Tachikawa. On the 6d origin of discrete additional data of 4d gauge theories , 2013, 1309.0697.
[38] O. Aharony,et al. Reading between the lines of four-dimensional gauge theories , 2013, 1305.0318.
[39] Shlomo S. Razamat,et al. Bootstrapping the superconformal index with surface defects , 2012, 1207.3577.
[40] Dan Xie. General Argyres-Douglas theory , 2012, 1204.2270.
[41] D. Green,et al. Exactly marginal deformations and global symmetries , 2010, 1005.3546.
[42] K. Papadodimas. Topological anti-topological fusion in four-dimensional superconformal field theories , 2009, 0910.4963.
[43] A. Shapere,et al. Central charges of 𝒩 = 2 superconformal field theories in four dimensions , 2008, Journal of High Energy Physics.
[44] S. R. Simanca,et al. The Sasaki Cone and Extremal Sasakian Metrics , 2007, 0801.0217.
[45] S. Yau,et al. Classification of 3-Dimensional Isolated Rational Hypersurface Singularities with $\c^*$-Action , 2003, math/0303302.
[46] W. Nahm. On electric-magnetic duality , 1997 .
[47] N. Seiberg,et al. The moduli space of vacua of N = 2 SUSY QCD and duality in N = 1 SUSY QCD , 1996, hep-th/9603042.
[48] E. Witten,et al. New N= 2 superconformal field theories in four dimensions , 1995, hep-th/9511154.
[49] E. Witten,et al. Supersymmetric Yang-Mills theory and integrable systems , 1995, hep-th/9510101.
[50] M. Douglas,et al. New Phenomena in SU(3) Supersymmetric Gauge Theory , 1995, hep-th/9505062.
[51] E. Witten,et al. Monopoles, duality and chiral symmetry breaking in N=2 supersymmetric QCD , 1994, hep-th/9408099.
[52] E. Witten,et al. Electric - magnetic duality, monopole condensation, and confinement in N=2 supersymmetric Yang-Mills theory , 1994, hep-th/9407087.
[53] M. Kreuzer,et al. NO MIRROR SYMMETRY IN LANDAU-GINZBURG SPECTRA! , 1992, hep-th/9205004.
[54] W. Nahm. Supersymmetries and their Representations , 1978 .
[55] Saghar Hosseini,et al. Maruyoshi-Song flows and defect groups of D bp ( G ) theories , 2021 .
[56] E. Shuryak. Monopoles , 2021, Nonperturbative Topological Phenomena in QCD and Related Theories.
[57] O. Aharony,et al. S-folds and 4d N = 3 superconformal (cid:12)eld theories , 2016 .
[58] S. Yau,et al. Semicontinuity of 4d N = 2 spectrum under renormalization group (cid:13)ow , 2016 .
[59] P. Liendo,et al. Stress-tensor OPE in N = 2 Superconformal Theories , 2015 .
[60] C. Papageorgakis,et al. Constraints on Chiral Operators in N = 2 SCFTs , 2014 .
[61] S. Cecotti,et al. More on the N = 2 superconformal systems of type D p ( G ) , 2013 .