The low-temperature heat capacity of fullerite C₆₀
dc.contributor.author | Bagatskii, M.I. | |
dc.contributor.author | Sumarokov, V.V. | |
dc.contributor.author | Barabashko, M.S. | |
dc.contributor.author | Dolbin, A.V. | |
dc.contributor.author | Sundqvist, B. | |
dc.date.accessioned | 2017-12-31T17:08:58Z | |
dc.date.available | 2017-12-31T17:08:58Z | |
dc.date.issued | 2015 | |
dc.description.abstract | The heat capacity at constant pressure of fullerite C₆₀ has been investigated using an adiabatic calorimeter in a temperature range from 1.2 to 120 K. Our results and literature data have been analyzed in a temperature interval from 0.2 to 300 K. The contributions of the intramolecular and lattice vibrations into the heat capacity of C₆₀ have been separated. The contribution of the intramolecular vibration becomes significant above 50 K. Below 2.3 K the experimental temperature dependence of the heat capacity of C60 is described by the linear and cubic terms. The limiting Debye temperature at T → 0 K has been estimated (Θ0 = 84.4 K). In the interval from 1.2 to 30 K the experimental curve of the heat capacity of C₆₀ describes the contributions of rotational tunnel levels, translational vibrations (in the Debye model with Θ0 = 84.4 K), and librations (in the Einstein model with ΘE,lib = 32.5 K). It is shown that the experimental temperature dependences of heat capacity and thermal expansion are proportional in the region from 5 to 60 K. The contribution of the cooperative processes of orientational disordering becomes appreciable above 180 K. In the high-temperature phase the lattice heat capacity at constant volume is close to 4.5 R, which corresponds to the high-temperature limit of translational vibrations (3 R) and the near-free rotational motion of C60 molecules (1.5 R). | uk_UA |
dc.description.sponsorship | The authors are indebted to A.I. Prokhvatilov, A.I. Krivchikov and S.B. Feodosyev for a fruitful discussion. | uk_UA |
dc.identifier.citation | The low-temperature heat capacity of fullerite C₆₀ / М.I. Bagatskii, V.V. Sumarokov, M.S. Barabashko, A.V. Dolbin, B. Sundqvist// Физика низких температур. — 2015. — Т. 41, № 8. — С. 812–819. — Бібліогр.: 54 назв. — англ. | uk_UA |
dc.identifier.issn | 0132-6414 | |
dc.identifier.other | PACS: 65.40.Ba, 65.80.–g, 81.05.ub | |
dc.identifier.uri | https://nasplib.isofts.kiev.ua/handle/123456789/127965 | |
dc.language.iso | en | uk_UA |
dc.publisher | Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України | uk_UA |
dc.relation.ispartof | Физика низких температур | |
dc.status | published earlier | uk_UA |
dc.subject | Наноструктуры при низких температурах | uk_UA |
dc.title | The low-temperature heat capacity of fullerite C₆₀ | uk_UA |
dc.type | Article | uk_UA |
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