Thermodynamics of the ideal two-dimensional magnetoexciton gas with linear dispersion law
Închide
Articolul precedent
Articolul urmator
347 2
Ultima descărcare din IBN:
2022-02-13 10:02
Căutarea după subiecte
similare conform CZU
536.7+538.8+621.38 (1)
Termodinamică. Energetică (15)
Electrotehnică (1161)
SM ISO690:2012
MOSKALENKO, Sveatoslav, PODLESNY, Igor, ZUBAC, Ion, NOVIKOV, Boris. Thermodynamics of the ideal two-dimensional magnetoexciton gas with linear dispersion law. In: Nanostructures: Physics and Technologies: 28th International Sympsium, 28 septembrie - 2 octombrie 2020, Minsk. St. Petersburg, Russia: Ioffe Institute RAS, 2020, Ediția a 28-a, pp. 224-225. ISBN 978-5-93634-066-6.
EXPORT metadate:
Google Scholar
Crossref
CERIF

DataCite
Dublin Core
Nanostructures: Physics and Technologies
Ediția a 28-a, 2020
Simpozionul "Nanostructures: Physics and Technology"
Minsk, Belarus, 28 septembrie - 2 octombrie 2020

Thermodynamics of the ideal two-dimensional magnetoexciton gas with linear dispersion law

CZU: 536.7+538.8+621.38

Pag. 224-225

Moskalenko Sveatoslav1, Podlesny Igor1, Zubac Ion1, Novikov Boris2
 
1 Institute of Applied Physics,
2 Institute of Physics, St. Petersburg
 
 
Disponibil în IBN: 1 decembrie 2021


Rezumat

The Bose–Einstein condensation of the two-dimensional magnetoexciton gas with Dirac cone dispersion law is possible at different from zero critical temperature. The partition function, the thermodynamic functions such as the free and full energies, entropy and heat capacity were calculated in both gaseous and degenerate phases. The second order phase transition takes place. The jump of the heat capacity at critical temperature does not exist.

DataCite XML Export

<?xml version='1.0' encoding='utf-8'?>
<resource xmlns:xsi='http://www.w3.org/2001/XMLSchema-instance' xmlns='http://datacite.org/schema/kernel-3' xsi:schemaLocation='http://datacite.org/schema/kernel-3 http://schema.datacite.org/meta/kernel-3/metadata.xsd'>
<creators>
<creator>
<creatorName>Moscalenco, S.A.</creatorName>
<affiliation>Institutul de Fizică Aplicată, Moldova, Republica</affiliation>
</creator>
<creator>
<creatorName>Podlesnîi, I.V.</creatorName>
<affiliation>Institutul de Fizică Aplicată, Moldova, Republica</affiliation>
</creator>
<creator>
<creatorName>Zubac, I.A.</creatorName>
<affiliation>Institutul de Fizică Aplicată, Moldova, Republica</affiliation>
</creator>
<creator>
<creatorName>Novikov, B.V.</creatorName>
<affiliation>Institute of Physics, St. Petersburg, Rusia</affiliation>
</creator>
</creators>
<titles>
<title xml:lang='en'>Thermodynamics of the ideal two-dimensional magnetoexciton gas with linear dispersion law</title>
</titles>
<publisher>Instrumentul Bibliometric National</publisher>
<publicationYear>2020</publicationYear>
<relatedIdentifier relatedIdentifierType='ISBN' relationType='IsPartOf'>978-5-93634-066-6</relatedIdentifier>
<subjects>
<subject schemeURI='http://udcdata.info/' subjectScheme='UDC'>536.7+538.8+621.38</subject>
</subjects>
<dates>
<date dateType='Issued'>2020</date>
</dates>
<resourceType resourceTypeGeneral='Text'>Conference Paper</resourceType>
<descriptions>
<description xml:lang='en' descriptionType='Abstract'><p>The Bose&ndash;Einstein condensation of the two-dimensional magnetoexciton gas with Dirac cone dispersion law is possible at different from zero critical temperature. The partition function, the thermodynamic functions such as the free and full energies, entropy and heat capacity were calculated in both gaseous and degenerate phases. The second order phase transition takes place. The jump of the heat capacity at critical temperature does not exist.</p></description>
</descriptions>
<formats>
<format>application/pdf</format>
</formats>
</resource>