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Charles Marcus has spent his career investigating quantum coherent phenomena in mesoscopic electronics. Early work, following a PhD on the unrelated topic of neural networks, focussed on ballistic conductance fluctuation and quantum chaos. this system, the shape of the structure, rather than disorder, is responsible for the chaotic trajectories of electrons and can be controlled by confinement. The role of decoherence—how classical emerges from quantum in chaotic system—was emphasized. In the following decade, Marcus’s focussed on spin physics in open mesoscopic structures and few-electron quantum dots. These small spin systems realized spin qubits, following the theory of Loss and DiVincenzo. In spin qubits, a principle source of decoherence is coupling of individual electron spins to ensembles of nuclear spins in the host material. Around this time, Marcus became connected to Microsoft research, and investigated possible non-Abelian excitations in the fractional quantum Hall effect. Upon moving to NBI in Copenhagen in 2012, Marcus continued investigating emergent non-abelian modes in the solid state, focusing on superconductor-semiconductor systems, including nanowires, 2D semiconductor heterostructures, and recently selective area grown hybrid materials.
Research Interests
Papers共 482 篇Author StatisticsCo-AuthorSimilar Experts
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D. Razmadze,R. Seoane Souto, E. C. T. O'Farrell,P. Krogstrup, M. Leijnse,C. M. Marcus,S. Vaitiekenas
PHYSICAL REVIEW Bno. 4 (2024)
Bayan Karimi,Gorm Ole Steffensen, Andrew P. Higginbotham,Charles M. Marcus,Alfredo Levy Yeyati,Jukka P. Pekola
arxiv(2024)
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arXiv (Cornell University) (2023)
arXiv (Cornell University)no. 4 (2023)
Physical review lettersno. 9 (2023): 096202
PHYSICAL REVIEW LETTERSno. 19 (2023): 196301-196301
PHYSICAL REVIEW Bno. 2 (2023)
PHYSICAL REVIEW Bno. 13 (2023)
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