Hyperuniform patterns nucleated at low temperatures: Insight from vortex matter imaged in unprecedentedly large fields-of-view

Fuente: arXiv
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Main Authors: Cruz-García, Alexey, Puig, Joaquín, Pylypenko, Sergii, Nieva, Gladys, Pautrat, Alain, Kolton, Alejandro Benedykt, Fasano, Yanina
Format: Preprint
Published: 2025
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author Cruz-García, Alexey
Puig, Joaquín
Pylypenko, Sergii
Nieva, Gladys
Pautrat, Alain
Kolton, Alejandro Benedykt
Fasano, Yanina
author_facet Cruz-García, Alexey
Puig, Joaquín
Pylypenko, Sergii
Nieva, Gladys
Pautrat, Alain
Kolton, Alejandro Benedykt
Fasano, Yanina
contents Hyperuniform patterns present enhanced physical properties that make them the new generation of cutting-edge technological devices. Synthesizing devices with tens of thousands of components arranged in a hyperuniform fashion has thus become a breakthrough to achieve in order to implement these technologies. Here we provide evidence that extended two-dimensional hyperuniform patterns spanning tens of thousands of components can be nucleated using as a template the low-temperature vortex structure obtained in pristine Bi2Sr2CaCu2O8 samples after following a field-cooling protocol.
format Preprint
id arxiv_https___arxiv_org_abs_2512_12920
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hyperuniform patterns nucleated at low temperatures: Insight from vortex matter imaged in unprecedentedly large fields-of-view
Cruz-García, Alexey
Puig, Joaquín
Pylypenko, Sergii
Nieva, Gladys
Pautrat, Alain
Kolton, Alejandro Benedykt
Fasano, Yanina
Superconductivity
Statistical Mechanics
Hyperuniform patterns present enhanced physical properties that make them the new generation of cutting-edge technological devices. Synthesizing devices with tens of thousands of components arranged in a hyperuniform fashion has thus become a breakthrough to achieve in order to implement these technologies. Here we provide evidence that extended two-dimensional hyperuniform patterns spanning tens of thousands of components can be nucleated using as a template the low-temperature vortex structure obtained in pristine Bi2Sr2CaCu2O8 samples after following a field-cooling protocol.
title Hyperuniform patterns nucleated at low temperatures: Insight from vortex matter imaged in unprecedentedly large fields-of-view
topic Superconductivity
Statistical Mechanics
url https://arxiv.org/abs/2512.12920