Najbliższe seminaria

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[Abstrakt, pełna informacja]

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: /2201.10260/adiabatic_change

Arxiv link

The files for the adiabatic evolution for path 0 and path 1. There are mainly two categories of zip files namely the eig files and the all files. In the eig files for the two paths the first column has the parameter $t$ stored while the second column contains the parameter $h$ while the rest of the columns contain the eigen values arranged in the ascending order. The all type files have details for the path and whether it is magnon or anti-magnon and the paticular magnon or anti-magnon state that the adiabatical tracking was started from. A particular all type file for a particular initial state again contains the parameter $t$ in the first column and the parameter $h$ in the second column. The third column contains the adiabatical overlap as which is used in Fig. S3, while the fourth column contains the position of the paricular state in ascending order of eigenvalues the fifth column contains the eigenvalue of the particular state, the sixth column contains the entanglement entropy of the particular state and finally the average level spacing (which was not used for the plots rather the average level spacing was found from the middle eigen values in the eig files). All the resulting calculation was done for system size $L=18$.

[Parent Directory]
Path0_eig_18.zip82MB
Path0_inv_all_18.zip312kB
Path0_mag_all_18.zip316kB
PathI_eig_18.zip90MB
PathI_inv_all_18.zip321kB
PathI_mag_all_18.zip316kB