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Tuning the optoelectronic properties of TMD monolayers with dielectric environment, photochemical processes, and strain. – (George Kioseoglou / LPCNO / Seminar). – 14/12/2023, 15H

Salle 220, LPCNO INSA – LPCNO : 135 avenue de Rangueil, toulouse, France

George Kioseoglou, University of Crete, Greece Séminaire LPCNO, seminar room, INSA, Build. 27, Room 2.20 (2nd floor left) Summary : Monolayers of MX2-type (M=Mo or W and X=S or Se) Transition Metal Dichalcogenides (TMDs), exhibit promising potential for future 2D nanoelectronics owing to their unique optoelectronic properties. In this seminar, I will present methods for… Read More »Tuning the optoelectronic properties of TMD monolayers with dielectric environment, photochemical processes, and strain. – (George Kioseoglou / LPCNO / Seminar). – 14/12/2023, 15H

Simulating chiral spin liquids with tensor networks : from bosonic projected entangled pair states to fermionic projected entangled pair states. – (Sen Niu / LPT / Seminar). – 19/12/2023, 14H

salle de séminaire 3ème étage Bâtiment 3r1 Université Toulouse III, Toulouse, France

Sen Niu (LPT) Seminar LPT, 19/12/2023, 14H, 3R1, seminar room, 3rd floor Summary : Chiral spin liquids (CSLs) are bosonic variant of fractional quantum Hall states realized in spin models. As a topologically ordered phase of matter, CSLs have degenerate ground states on torus while host chiral edge modes (or entanglement spectrum) on an open… Read More »Simulating chiral spin liquids with tensor networks : from bosonic projected entangled pair states to fermionic projected entangled pair states. – (Sen Niu / LPT / Seminar). – 19/12/2023, 14H

Resserrement des limites de continuité sur les entropies et des limites sur les capacités quantiques. – (Michael Jabbour / LPT / Seminar). – 16/01/2024, 14 H.

salle de séminaire 3ème étage Bâtiment 3r1 Université Toulouse III, Toulouse, France

Michael Jabbour (Université libre de Bruxelles) Seminar LPT, 16/01/2024, 14H, 3R1, seminar room, 3rd floor Résumé: One of the most basic tasks in information theory is communication. The capacity of a quantum channel is the maximum rate at which information can be transmitted through it reliably (in the asymptotic limit) per use of the channel.… Read More »Resserrement des limites de continuité sur les entropies et des limites sur les capacités quantiques. – (Michael Jabbour / LPT / Seminar). – 16/01/2024, 14 H.