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Regensburg 2019 – wissenschaftliches Programm

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TT: Fachverband Tiefe Temperaturen

TT 46: Quantum Dots, Quantum Wires, Point Contacts

Mittwoch, 3. April 2019, 15:00–18:45, H22

15:00 TT 46.1 Spectral and transport properties of superconducting quantum dots — •Vladislav Pokorný and Martin Žonda
15:15 TT 46.2 Enhancing entanglement by spin manipulation in Cooper pair splitters — •Ciprian Padurariu, Jami Rönkkö, Michael V. Moskalets, and Christian Flindt
15:30 TT 46.3 Phase-dependent heat and charge transport through superconductor-quantum dot hybrids. — •Mathias Kamp and Björn Sothmann
15:45 TT 46.4 Nonlocal heat transfer between resonators by splitting Cooper pairs — •Mattia Mantovani, Gianluca Rastelli, Wolfgang Belzig, and Robert Hussein
16:00 TT 46.5 Phase-coherent heat circulator based on multiterminal Josephson junctions — •Sun-Yong Hwang, Francesco Giazotto, and Björn Sothmann
16:15 TT 46.6 An integrable multi-channel sine-Gordon model with Josephson circuits — •Ananda Roy and Hubert Saleur
16:30 TT 46.7 Manipulation of non-linear heat currents in the dissipative Anderson-Holstein model — •Bitan De and Bhaskaran Muralidharan
  16:45 15 min. break.
17:00 TT 46.8 Resonant transport through interacting proximitized quantum dots — •Stephan Weiss and Jürgen König
17:15 TT 46.9 Resonant tunneling through interacting quantum-dot spin valves - ISPI results — •Simon Mundinar, Jürgen König, and Stephan Weiss
17:30 TT 46.10 Interference effects in the cotunnelling transport regime — •Christoph Rohrmeier, Milena Grifoni, and Andrea Donarini
17:45 TT 46.11 Feynman-Vernon approach to transport in interacting quantum dots beyond the weak tunneling regime — •Luca Magazzù and Milena Grifoni
18:00 TT 46.12 Coherent long-range transfer of two-electron states in ac driven triple quantum dots — •Jordi Picó-Cortés, Fernando Gallego-Marcos, and Gloria Platero
18:15 TT 46.13 Improved quantum transport calculations using the Numerical Renormalization Group — •Emma L. Minarelli and Andrew K. Mitchell
18:30 TT 46.14 Coexistence of superconductivity and quantum Hall states in InSb Nanosheets — •Ning Kang
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