Entropic phase transitions and accompanying anomalous thermodynamics of matter

被引:11
|
作者
Iosilevskiy, I. L. [1 ]
机构
[1] Russian Acad Sci, Joint Inst High Temp, Izhorskaya 13,Bldg 2, Moscow 125412, Russia
关键词
TEMPERATURE; STATE;
D O I
10.1088/1742-6596/653/1/012077
中图分类号
O59 [应用物理学];
学科分类号
摘要
Thermodynamic consequences of subdivision for all first-order phase transitions (PT) into enthalpy- and entropy-driven ones (H-PT and S-PT), proposed previously [arXiv:1403.8053], are under discussions. Key-value for proposed discrimination is main benefit (decreasing) in enthalpy or (nega)entropy in spontaneous phase decomposition, i.e. the sign of latent heat of PT and consequent slope of its P(T)-dependence. The main driving mechanism for many isostructural S-PT is the decay (delocalization) of some kind of bound complexes, e.g. atoms, molecules etc. Thermodynamic features of H-PT and S-PT differ significantly. Entropic PT are always the part of more general thermodynamic anomaly domain where great number of usually positive second cross derivatives (e.g. Griineisen parameter, thermal pressure coefficient etc.) became negative simultaneously. This domain is restricted (in the case of isostructural S-PT) by remarkable bound, where all mentioned second derivatives are equal to zero. Isostructural S-PT has more complicated topology of stable, metastable and unstable states and their boundaries binodals and spinodals in comparison with ordinary enthalpic PTs. Two new thermodynamic objects accompany isostructural S-PT: (i) appearance of third (additional) region of metastable states with positive compressibility, isolated from the regions of stable states; (ii) appearance of new additional spinodal, topped with a new singular point, separating metastable and unstable states. These additional spinodal and singular point obey to relation (partial derivative P/partial derivative V)(T) - infinity All thermodynamic anomalies of entropic PTs correspond to conclusive and transparent geometrical feature of such PTs: multilayered structure of thermodynamic surfaces for temperature, entropy and internal energy as pressure density functions U(P,V), S(P, V) and T(P,V).
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Anomalous thermodynamics and phase transitions in neutron star matter
    Ducoin, C.
    Hasnaoui, K. H. O.
    Napolitani, P.
    Chomaz, Ph.
    Gulminelli, F.
    PHYSICAL REVIEW C, 2007, 75 (06):
  • [2] Hydrophobic Segregation, Phase Transitions and the Anomalous Thermodynamics of Water/Methanol Mixtures
    Pascal, Tod A.
    Goddard, William A., III
    JOURNAL OF PHYSICAL CHEMISTRY B, 2012, 116 (47): : 13905 - 13912
  • [3] THE SIMULATION OF ENTROPIC PHASE-TRANSITIONS
    FRENKEL, D
    JOURNAL OF PHYSICS-CONDENSED MATTER, 1994, 6 : A71 - A78
  • [4] THERMODYNAMICS OF PHASE-TRANSITIONS
    JEANLOZ, R
    REVIEWS IN MINERALOGY, 1985, 14 : 389 - 428
  • [5] THERMODYNAMICS AND PHASE TRANSITIONS IN MONOLAYERS
    MOTOMURA, K
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1967, 23 (03) : 313 - &
  • [6] Leggett Modes Accompanying Crystallographic Phase Transitions
    Meier, Quintin N.
    Hickox-Young, Daniel
    Laurita, Geneva
    Spaldin, Nicola A.
    Rondinelli, James M.
    Norman, Michael R.
    PHYSICAL REVIEW X, 2022, 12 (01)
  • [7] Phase transitions in thick branes endorsed by entropic information
    Cruz, W. T.
    Dantas, D. M.
    Correa, R. A. C.
    Almeida, C. A. S.
    PHYSICS LETTERS B, 2017, 772 : 592 - 598
  • [8] On the thermodynamics of phase transitions in metal hydrides
    Di Vita, Andrea
    CENTRAL EUROPEAN JOURNAL OF PHYSICS, 2012, 10 (01): : 86 - 95
  • [9] Statistical thermodynamics of cluster phase transitions
    Strachan, A
    Dorso, CO
    PHYSICA A, 1998, 257 (1-4): : 526 - 529
  • [10] Thermodynamics and phase transitions in galaxy clustering
    Demir, N.
    Iqbal, N.
    ASTRONOMISCHE NACHRICHTEN, 2019, 340 (05) : 449 - 458