BEGIN:VCALENDAR
VERSION:2.0
PRODID:-//Memento EPFL//
BEGIN:VEVENT
SUMMARY:Superconducting Quantum Spintronics: a paradigm-shift for low powe
 r electronics and quantum technologies
DTSTART:20241113T163000
DTEND:20241113T173000
DTSTAMP:20260921T144830Z
UID:0eaf68307d12e83a6a320b794224fa549be144eebfb959490823caef
CATEGORIES:Conferences - Seminars
DESCRIPTION:Prof. Jason Robinson\,\nUniversity of Cambridge\nThe field of 
 “superconducting quantum spintronics” has emerged in the past past dec
 ade [1-3]\, combining magnetism\, superconductivity and quantum coherence.
  This has created the potential for a computing architecture which is not 
 simply a low dissipation analogue of conventional spin-electronics\, but i
 nstead exploits the unique features of superconductivity to couple electro
 n charge and spin for logic and memory applications. Current concepts are 
 theoretical or preliminary experimental  demonstrations [4-8]. My group i
 s developing the field with the vision of establishing a framework for ene
 rgy efficient (beyond silicon) large-scale computers. This lecture will in
 troduce my research and vision on superconducting spintronics and related 
 areas.\n\n	Linder\, J. & Robinson\, J. W. A. Nature Phys 11\, 307–315 
 (2015).\n	Amundsen\, M.\, Linder\, J.\, Robinson\, J. W. A.\, Žutić\, I.
  & Banerjee\, N. Rev. Mod. Phys. 96\, 021003 (2024).\n	Yang\, G.\, Cicca
 relli\, C. & Robinson\, J. W. A. APL Materials 9\, 050703 (2021).\n	Jeon\
 , K.-R. et al.  Phys. Rev. X 10\, 031020 (2020).\n	Di Bernardo\, A. e
 t al. Nat Mater 18\, 1194–1200 (2019).\n	Komori\, S. et al. Sci Adv
  7\, eabe0128 (2021).\n	Narita\, H. et al. Nat. Nanotechnol. 17\, 823
 –828 (2022).\n	Gutfreund\, A. et al. Nat Commun 14\, 1630 (2023).\n
LOCATION:CM 1 4 https://plan.epfl.ch/?room==CM%201%204 https://epfl.zoom.u
 s/j/69063478032
STATUS:CONFIRMED
END:VEVENT
END:VCALENDAR
