bibtype J - Journal Article
ARLID 0382314
utime 20240103201413.1
mtime 20121031235959.9
WOS 000314414200001
DOI 10.1007/s00033-012-0236-6
title (primary) (eng) Thermodynamically consistent mesoscopic model of the ferro/paramagnetic transition
specification
page_count 28 s.
serial
ARLID cav_un_epca*0255379
ISSN 0044-2275
title Zeitschrift für angewandte Mathematik und Physik
volume_id 64
page_num 1-28
publisher
name Springer
keyword ferro-para-magnetism
keyword evolution
keyword thermodynamics
author (primary)
ARLID cav_un_auth*0255197
name1 Benešová
name2 Barbora
full_dept (cz) D 5 - Ultrazvukové metody
full_dept (eng) D 5 - Ultrasonic Methods
institution UT-L
full_dept D5 – Ultrasonic Methods
fullinstit Ústav termomechaniky AV ČR, v. v. i.
author
ARLID cav_un_auth*0101142
name1 Kružík
name2 Martin
full_dept (cz) Matematická teorie rozhodování
full_dept Department of Decision Making Theory
department (cz) MTR
department MTR
institution UTIA-B
full_dept Department of Decision Making Theory
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
author
ARLID cav_un_auth*0101187
name1 Roubíček
name2 Tomáš
full_dept (cz) Matematická teorie rozhodování
full_dept Department of Decision Making Theory
department (cz) MTR
department MTR
institution UTIA-B
full_dept Department of Decision Making Theory
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
source
url http://library.utia.cas.cz/separaty/2012/MTR/kruzik-thermodynamically consistent mesoscopic model of the ferro-paramagnetic transition.pdf
cas_special
project
project_id IAA100750802
agency GA AV ČR
ARLID cav_un_auth*0241214
project
project_id GA106/08/1397
agency GA ČR
country CZ
ARLID cav_un_auth*0239600
project
project_id LC06052
agency GA MŠk
country CZ
ARLID cav_un_auth*0229224
project
project_id GA106/09/1573
agency GA ČR
ARLID cav_un_auth*0253996
project
project_id GAP201/10/0357
agency GA ČR
ARLID cav_un_auth*0263489
abstract (eng) A continuum evolutionary model for micromagnetics is presented that, beside the standard magnetic balance laws, includes thermomagnetic coupling. To allow conceptually efficient computer implementation, inspired by relaxation method of static minimization problems, our model is mesoscopic in the sense that possible fine spatial oscillations of the magnetization are modeled by means of Young measures. Existence of weak solutions is proved by backward Euler time discretization.
reportyear 2013
RIV BA
num_of_auth 3
mrcbC55 UT-L BA
inst_support RVO:67985556 RVO:61388998
permalink http://hdl.handle.net/11104/0212570
mrcbT16-e MATHEMATICSAPPLIED
mrcbT16-f 1.153
mrcbT16-g 0.260
mrcbT16-h >10.0
mrcbT16-i 0.00410
mrcbT16-j 0.732
mrcbT16-k 1718
mrcbT16-l 100
mrcbT16-s 1.062
mrcbT16-z ScienceCitationIndex
mrcbT16-4 Q1
mrcbT16-B 65.707
mrcbT16-C 77.888
mrcbT16-D Q2
mrcbT16-E Q2
arlyear 2013
mrcbU34 000314414200001 WOS
mrcbU63 cav_un_epca*0255379 Zeitschrift für angewandte Mathematik und Physik 0044-2275 1420-9039 Roč. 64 Č. 1 2013 1 28 Springer