Alberto Cattaneo

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Alberto Cattaneo (r.) with Ping Xu, Oberwolfach 2003

Alberto Sergio Cattaneo (26 June 1967 in Milan)[1] is an Italian mathematician and mathematical physicist, specializing in geometry related to quantum field theory and string theory.

Biography[]

Cattaneo graduated in 1986 from the liceo scientifico Liceo A. Volta in Milan. He studied physics at the University of Milan with laurea in 1991 and Ph.D. in 1995. His laurea thesis Studio delle proprietà di localizzazione su catene quasiperiodiche mediante gruppo di rinormalizzazione nello spazio reale (A study of the localization properties on quasiperiodic chains via renormalization group in real space) was supervised by Luciano Girardello. Cattaneo's Ph.D. thesis Teorie topologiche di tipo BF ed invarianti dei nodi (Topological BF theories and knot invariants) was supervised by Maurizio Martellini. As a postdoc, Cattaneo was from 1995 to 1997 in Harvard University's physics department, where he studied under Arthur Jaffe, and from 1997 to 1998 in the University of Milan's mathematics department, where he studied under Paolo Cotta-Ramusino. In the University of Zurich's mathematics department, Cattaneo was from 1998 to 2003 a professor extraordinaries and is since 2003 a professor ordinarius. At the University of Zurich's Institute of Mathematics, he was the deputy director from 2013 to 2015 and the director from 2015 to 2017. He was in the autumn of 2001 a guest in Harvard University's mathematics department, where he worked with Raoul Bott, and was in the spring of 2005 at IHES.[1]

Much of his research concerns topological field theories with applications to knot theory.[1] With Giovanni Felder he developed a path integral interpretation of the deformation quantization of Poisson manifolds (introduced in 2003 by Maxim Kontsevich).[2]

Cattaneo was elected a Fellow of the American Mathematical Society in the Class of 2013 (announced in 2012). in 2006 he was an Invited Speaker with talk From topological field theory to deformation quantization and reduction at the International Congress of Mathematicians in Madrid.[3]

He is married with one child.[1]

Selected publications[]

Articles[]

  • Cattaneo, Alberto S.; Cotta‐Ramusino, Paolo; Fröhlich, Jürg; Martellini, Maurizio (1995). "Topological BF theories in 3 and 4 dimensions". Journal of Mathematical Physics. 36 (11): 6137–6160. arXiv:hep-th/9505027. Bibcode:1995JMP....36.6137C. doi:10.1063/1.531238. S2CID 166350.
  • Cattaneo, Alberto S.; Felder, Giovanni; Tomassini, Lorenzo (2002). "From local to global deformation quantization of Poisson manifolds". Duke Mathematical Journal. 115 (2). doi:10.1215/S0012-7094-02-11524-5. S2CID 10201285.
  • Cattaneo, A. S.; Indelicato, D. (2005). Formality and star products. 323. pp. 79–144. arXiv:math/0403135. doi:10.5167/uzh-21691. ISBN 9780521615051. S2CID 17250747.
  • Cattaneo, Alberto S.; Felder, Giovanni (2007). "Relative formality theorem and quantisation of coisotropic submanifolds". Advances in Mathematics. 208 (2): 521–548. doi:10.1016/j.aim.2006.03.010. S2CID 10469717.
  • Cattaneo, A. S. (2008). "Deformation quantization and reduction". Cont. Math. 450: 79–101. arXiv:math/0701378. doi:10.5167/uzh-6703. S2CID 218971990.
  • Cattaneo, Alberto S.; Dherin, Benoit; Weinstein, Alan (2010). "Symplectic microgeometry I: Micromorphisms". Journal of Symplectic Geometry. 8 (2): 205–223. arXiv:0905.3574. doi:10.4310/JSG.2010.v8.n2.a4. S2CID 50308861.
  • Cattaneo, Alberto S.; Dherin, Benoît; Weinstein, Alan (2011). "Symplectic microgeometry II: Generating functions". Bulletin of the Brazilian Mathematical Society. New Series. 42 (4): 507–536. arXiv:1103.0672. doi:10.1007/s00574-011-0027-2. S2CID 44023383.
  • Landsman, N. P.; Pflaum, Markus; Schlichenmaier, Martin (2012). "Poisson sigma models and symplectic groupoids by A. Cattaneo and G. Felder". Quantization of Singular Symplectic Quotients, eds. Landsman, Pflaum, & Schlichenmaier. pp. 61–94. ISBN 978-3-0348-8364-1.
  • Cattaneo, Alberto S.; Mnev, Pavel; Reshetikhin, Nicolai (2012). "Classical and quantum Lagrangian field theories with boundary". arXiv:1207.0239 [math-ph].
  • Cattaneo, Alberto S.; Dherin, Benoit; Weinstein, Alan (2013). "Symplectic microgeometry III: Monoids". Journal of Symplectic Geometry. 11 (3): 319–341. arXiv:1109.4789. doi:10.4310/JSG.2013.v11.n3.a1. S2CID 50637248.
  • Cattaneo, Alberto S.; Mnev, Pavel; Reshetikhin, Nicolai (2016). "Perturbative BV theories with Segal-like gluing". arXiv:1602.00741 [math-ph].
  • Cattaneo, Alberto S.; Schiavina, Michele (2017). "On Time". Letters in Mathematical Physics. 107 (2): 375–408. arXiv:1607.02412. Bibcode:2017LMaPh.107..375C. doi:10.1007/s11005-016-0907-x. S2CID 119145820.
  • Cattaneo, Alberto S.; Mnev, Pavel; Reshetikhin, Nicolai (2018). "Perturbative Quantum Gauge Theories on Manifolds with Boundary". Communications in Mathematical Physics. 357 (2): 631–730. arXiv:1507.01221. Bibcode:2018CMaPh.357..631C. doi:10.1007/s00220-017-3031-6. hdl:21.11116/0000-0004-0613-0. S2CID 119640108.
  • Cattaneo, Alberto S.; Moshayedi, Nima; Wernli, Konstantin (2019). "Globalization for Perturbative Quantization of Nonlinear Split AKSZ Sigma Models on Manifolds with Boundary". Communications in Mathematical Physics. 372 (1): 213–260. arXiv:1807.11782. Bibcode:2019CMaPh.372..213C. doi:10.1007/s00220-019-03591-5. S2CID 119605584.
  • Cattaneo, Alberto S.; Dherin, Benoit; Weinstein, Alan (2020). "Symplectic Microgeometry IV: Quantization". arXiv:2007.08167 [math.SG].

Books[]

as editor[]

References[]

  1. ^ Jump up to: a b c d "Prof. Alberto S. Cattaneo". Institut für Mathematik, Universität Zürich.
  2. ^ Cattaneo, Alberto S.; Felder, Giovanni (2000). "A Path Integral Approach to the Kontsevich Quantization Formula". Communications in Mathematical Physics. 212 (3): 591–611. arXiv:math/9902090. Bibcode:2000CMaPh.212..591C. doi:10.1007/s002200000229. S2CID 8510811.
  3. ^ Cattaneo, Alberto S. (2016). "From topological field theory to deformation quantization and reduction". arXiv:1608.06576 [math-ph].
  4. ^ "Déformation, Quantification, Théorie de Lie". AMS Bookstore.

External links[]

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