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Dresden 2026 – scientific programme

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TT: Fachverband Tiefe Temperaturen

TT 56: Superconductivity: Theory I

Wednesday, March 11, 2026, 15:00–18:30, CHE/0089

15:00 TT 56.1 Non-thermal pairing glue of electrons in the steady state — •Michele Pini, Christian H. Johansen, and Francesco Piazza
15:15 TT 56.2 Critical behavior of the Superconducting Phase Transition in a Lattice Gauge Theory Approach — •Greta S. Reese and Ludwig Mathey
15:30 TT 56.3 Enhancing superconductivity using thermal bosons — •Ekaterina Vlasiuk, Eugene Demler, and Richard Schmidt
15:45 TT 56.4 Generalized condition for odd-frequency pairing in multiband materials — •Florian Kayatz, Annica M. Black-Schaffer, and Jorge Cayao
16:00 TT 56.5 Enhanced Superconductivity in Proximity to Peaks in Densities of States — •Joshua Althüser, Ilya Eremin, and Götz S. Uhrig
16:15 TT 56.6 Fluctuation conductivity in multicomponent superconductors — •Sondre Duna Lundemo and Asle Sudbø
16:30 TT 56.7 Constraints on the theoretical modeling of hole-doped La2CuO4 — •qiwei li, hanif hadipour, xue-jing zhang, and eva pavarini
  16:45 15 min. break
17:00 TT 56.8 Superlinear Hall angle, magnetotransport, and superconductivity in solvable models for strange metals — •Davide Valentinis, Aavishkar A. Patel, Subir Sachdev, and Joerg Schmalian
17:15 TT 56.9 Achieving analogue states of high-Tc superconductivity with current quantum simulators — •Thomas Köhler and Adrian Kantian
17:30 TT 56.10 Understanding and enhancing superconductivity in cuprates with low-energy Hamiltonians and explicit machine learning — •Jean-Baptiste Morée and Ryotaro Arita
17:45 TT 56.11 Strong-coupling superconductivity near Gross-Neveu quantum criticality in Dirac systems — •Veronika Stangier, Daniel Sheehy, and Jörg Schmalian
18:00 TT 56.12 Chiral superconductivity in time-reversal symmetry broken honeycomb systems — •Lucca Marchetti, Matthew Bunney, and Stephan Rachel
18:15 TT 56.13 A universal route to chiral Ising superconductivity in monolayer TaS2 and NbSe2 — •Lucia Gibelli, Simon Höcherl, Julian Siegl, Viliam Vano, Somesh C.Ganguli, Magdalena Marganska, and Milena Grifoni
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