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个人简介
My research concerns many aspects of the theory of strongly correlated condensed matter systems with a particular focus
on spin-dependent and phase-coherent phenomena (‘mesoscopics’) in nanostructures such as quantum wires, quantum dots, carbon nanotubes, semi-conducting heterostructures, etc. At this length scale, quantum effects, such as the wave nature of the electron, local magnetism, superconductivity, play a prominent role.
More generally, l hold a general interest for strongly correlated systems in condensed matter and quantum optics among which
Transport in correlated nanosystems and its non-equilibrium features (includes hybrid electronic-cavity QED systems)
New topological states of matter such as topological insulators and superconductors and their exotic excitations.
Quantum spintronics
Strongly correlated quantum systems in low dimensions.
I am mainly using analytical methods based on quantum field theory, such as diagrammatics, renormalization group approaches, etc.
on spin-dependent and phase-coherent phenomena (‘mesoscopics’) in nanostructures such as quantum wires, quantum dots, carbon nanotubes, semi-conducting heterostructures, etc. At this length scale, quantum effects, such as the wave nature of the electron, local magnetism, superconductivity, play a prominent role.
More generally, l hold a general interest for strongly correlated systems in condensed matter and quantum optics among which
Transport in correlated nanosystems and its non-equilibrium features (includes hybrid electronic-cavity QED systems)
New topological states of matter such as topological insulators and superconductors and their exotic excitations.
Quantum spintronics
Strongly correlated quantum systems in low dimensions.
I am mainly using analytical methods based on quantum field theory, such as diagrammatics, renormalization group approaches, etc.
研究兴趣
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SCIPOST PHYSICSno. 4 (2024): 094
JOURNAL OF PORPHYRINS AND PHTHALOCYANINESno. 07N10 (2023): 1231-1240
Angewandte Chemie International Editionno. 43 (2023)
arxiv(2023)
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arXiv (Cornell University)no. 7 (2023)
arXiv (Cornell University)no. 3 (2023): 033207
arXiv (Cornell University) (2023)
Nanoscale advancesno. 6 (2023): 1681-1690
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