Zobrazeno 1 - 10
of 264
pro vyhledávání: '"James, P.F."'
Autor:
Perera, C., Zheng, S., Kokkinos, M.I., Georgiou, H.M., Schoppet, M., James, P.F., Brennecke, S.P., Kalionis, B.
Publikováno v:
In Placenta August 2022 126:175-183
Akademický článek
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Publikováno v:
In Physics Procedia 2015 68:43-51
Publikováno v:
Physical Review B. 104
We generate the perturbative expansion of the single particle Green's function and related self-energy for a half-filled single-band Hubbard model on a square lattice. We invoke algorithmic Matsubara integration to evaluate single-particle quantities
Publikováno v:
In Analytica Chimica Acta 2008 626(2):111-118
Motivated by the recent experimental realization of twisted trilayer graphene and the observed superconductivity that is associated with its flat bands at specific angles, we study trilayer graphene under the influence of different forms of light in
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a081ff3443a84b4fa5985f0733914aa0
Publikováno v:
Physical Review B. 102
We systematically generate the perturbative expansion for the two-particle spin susceptibility in the Feynman diagrammatic formalism and apply this expansion to a model system - the single-band Hubbard model on a square lattice. We make use of algori
Akademický článek
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Autor:
Alexander Gaenko, Tianran Chen, Synge Todo, Matthias Troyer, Hiroshi Shinaoka, James P.F. LeBlanc, Ryo Igarashi, Ping Nang Ma, Ryan Levy, Qiaoyuan Dong, Sergei Iskakov, Joseph Paki, Jan Gukelberger, Gabriele Carcassi, Mario S. Könz, Lukas Gamper, Emanuel Gull, Andrey E. Antipov, Xi Chen
Publikováno v:
Computer Physics Communications. 213:235-251
The open source ALPS (Algorithms and Libraries for Physics Simulations) project provides a collection of physics libraries and applications, with a focus on simulations of lattice models and strongly correlated systems. The libraries provide a conven
Publikováno v:
Nature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
Nature Communications
Nature Communications
The pseudogap in the cuprate high-temperature superconductors was discovered as a suppression of the Knight shift and spin relaxation time measured in nuclear magnetic resonance (NMR) experiments. However, theoretical understanding of this suppressio