Najbliższe seminaria

19 VMarcin Wieśniak (University of Gdańsk)
How to be a Copehagenistic-Qubistic Everettist?
Gdzie: B-1-46 AND MS Teams [ZOA-test], 12:15
Seminarium Zakładowe
Online: [link]
19 Vmgr Rafał Bistroń (IFT UJ)
Local Thermal Operations and Classical Communication
Gdzie: F-1-04 and ZOOM
14:15
Online: [link], pass: on request!

Chaos i Informacja Kwantowa
Pokaż pozostałe

[Abstrakt, pełna informacja]

Konferencje

06-10.09.2025 - A Panorama of Tensor Networks: from Condensed Matter to Quantum Field Theory, Holography and Beyond

More details on conference website.

01-15.09.2025 - Quantum Optics XI

Więcej szczegółów na stronie konferencji.

16-17.07.2025 - Time Crystals Conference 2025

More details on conference website.

20-22.02.2024 - Workshop on Quantum Simulators of the Future: From Dynamical Gauge Fields to Lattice Gauge Theories | (smr 3922)

An ICTP Meeting This Workshop will gather world-leading groups that design, realize, and characterize a new generation of simulators with ultracold atoms and beyond. It will address novel quantum simulators of statistical gauge fields, dynamical lattices, and lattice gauge theory models (LGT), as well as connections to quantum computing and tensor network methods. https://indico.ictp.it/event/10460

Konferencje

06-08.09.2023 - Konferencja "Time Crystals"


27.06-2.07.2022 - 6th Workshop on Algebraic Designs, Hadamard Matrices & Quanta

Więcej szczegółów on conference website.

05-11.09.2021 - Quantum Optics X

Więcej szczegółów na stronie konferencji.

Open Data

Current: /2308.01073

Arxiv link

The quantum sun model is an interacting model that exhibits sharp signatures of ergodicity breaking phase transition. Here, we show that the model exhibits a many-body mobility edge. We provide analytical arguments for its existence, complemented by the state-of-the-art numerical simulations analyzing gap ratios, Thouless times as well as entanglement entropy of eigenstates. We also introduce the quantum sun model with particle number conservation and argue that it shares many similarities with its unrestricted predecessor.

[Parent Directory]
dataDIR
precalculated_plot_pointsDIR
Plots.ipynb4MB
beta_h_crit_dist2.pdf27kB
boundary3.pdf20kB
chi.pdf14kB
cons_boundary3.pdf18kB
cons_r_epsi=0.5.pdf41kB
cons_r_epsi=0.5_inset.pdf18kB
cons_tip3.pdf29kB
cons_width3.pdf28kB
conserved_beta_h_crit_dist2.pdf28kB
conserved_intersections.pdf92kB
conserved_k_fulldiag.pdf36kB
conserved_k_fulldiag_inset.pdf78kB
conserved_k_polfed.pdf35kB
conserved_k_polfed_inset.pdf62kB
conserved_tau.pdf24kB
dataset.tar.gz372GB
ent_main_text_a.pdf13kB
ent_main_text_b.pdf15kB
ent_main_text_b_inset.pdf13kB
ent_supplement_a.pdf12kB
ent_supplement_b.pdf13kB
ent_supplement_c.pdf13kB
ent_supplement_d.pdf14kB
ent_supplement_d_inset.pdf13kB
phase_diagram_a.pdf60kB
phase_diagram_b.pdf59kB
rbar_vs_epsi3.pdf105kB
scaling.pdf38kB
tip3.pdf30kB
width3.pdf29kB