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Thermodynamic glass transition in a spin glass without time-reversal symmetryGrowing timescales and lengthscales characterizing vibrations of amorphous solidsA statics-dynamics equivalence through the fluctuation-dissipation ratio provides a window into the spin-glass phase from nonequilibrium measurements.An Ising model for metal-organic frameworks.Liquid-glass transition in equilibrium.Numerical detection of the Gardner transition in a mean-field glass formerDynamical transition in theD=3Edwards-Anderson spin glass in an external magnetic fieldJanus II: A new generation application-driven computer for spin-system simulationsThe three-dimensional Ising spin glass in an external magnetic field: the role of the silent majorityCritical parameters of the three-dimensional Ising spin glassTemperature chaos in 3D Ising spin glasses is driven by rare eventsReconfigurable computing for Monte Carlo simulations: Results and prospects of the Janus projectCritical behavior of three-dimensional disordered Potts models with many statesNature of the spin-glass phase at experimental length scalesSpin glasses on the hypercubeStatic versus Dynamic Heterogeneities in theD=3Edwards-Anderson-Ising Spin GlassSample-to-sample fluctuations of the overlap distributions in the three-dimensional Edwards-Anderson spin glassEquilibrium fluid-solid coexistence of hard spheresSeparation and fractionation of order and disorder in highly polydisperse systemsMatching Microscopic and Macroscopic Responses in GlassesSpin-glass-like aging in colloidal and granular glassesAging Rate of Spin Glasses from Simulations Matches ExperimentsThe Mpemba effect in spin glasses is a persistent memory effect
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P50
description
Forscher
@de
chercheur
@fr
hulumtuese
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investigador
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researcher
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հետազոտող
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研究者
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name
Beatriz Seoane
@ast
Beatriz Seoane
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Beatriz Seoane
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Beatriz Seoane
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type
label
Beatriz Seoane
@ast
Beatriz Seoane
@en
Beatriz Seoane
@es
Beatriz Seoane
@nl
prefLabel
Beatriz Seoane
@ast
Beatriz Seoane
@en
Beatriz Seoane
@es
Beatriz Seoane
@nl
P108
P106
P21
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P496
0000-0003-4007-9406