Unusual Gruneisen and Bridgman parameters of low-density amorphous ice and their implications on pressure induced amorphization

被引:16
作者
Andersson, O [1 ]
Inaba, A
机构
[1] Umea Univ, Dept Phys, S-90187 Umea, Sweden
[2] Osaka Univ, Grad Sch Sci, Toyonaka, Osaka, Japan
关键词
D O I
10.1063/1.1869352
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The low-temperature limiting value of the Gruneisen parameter for low-frequency phonons and the density dependence of the thermal conductivity (Bridgman parameter) of low-density amorphous (LDA) ice, high-density amorphous (HDA) ice, hexagonal ice Ih, and cubic ice Ic were calculated from high-pressure sound velocity and thermal conductivity measurements, yielding negative values for all states except HDA ice. LDA ice is the first amorphous state to exhibit a negative Bridgman parameter, and negative Gruneisen parameters are relatively unusual. Since Ih, Ic, and LDA ice all transform to HDA upon pressurization at low temperatures and share the unusual feature of negative Gruneisen parameters, this seems to be a prerequisite for pressure induced amorphization. We estimate that the Gruneisen parameter increases at the ice Ih to XI transition, and may become positive in ice XI, which indicates that proton-ordered ice XI does not amorphize like ice Ih on pressurization.
引用
收藏
页数:5
相关论文
共 27 条
[1]   Influence of impurities on two-level systems in amorphous ice [J].
Agladze, NI ;
Sievers, AJ .
PHYSICA B-CONDENSED MATTER, 2002, 316 :513-516
[2]   Far-infrared properties of two-level systems in amorphous ice [J].
Agladze, NI ;
Sievers, AJ .
EUROPHYSICS LETTERS, 2001, 53 (01) :40-45
[3]   Thermal conductivity of amorphous ices [J].
Andersson, O ;
Suga, H .
PHYSICAL REVIEW B, 2002, 65 (14) :1-4
[4]   THERMAL-CONDUCTIVITY OF THE IH AND XI PHASES OF ICE [J].
ANDERSSON, O ;
SUGA, H .
PHYSICAL REVIEW B, 1994, 50 (10) :6583-6588
[5]   ELASTIC MODULI OF ICE MONOCRYSTALS [J].
DANTL, G .
PHYSIK DER KONDENSITERTEN MATERIE, 1968, 7 (05) :390-+
[6]   NATURE OF THE TRANSFORMATIONS OF ICE-I AND LOW-DENSITY AMORPHOUS ICE TO HIGH-DENSITY AMORPHOUS ICE [J].
FLORIANO, MA ;
HANDA, YP ;
KLUG, DD ;
WHALLEY, E .
JOURNAL OF CHEMICAL PHYSICS, 1989, 91 (11) :7187-7192
[7]   The entropy of water and the third law of thermodynamics - The heat capacity of ice from 15 to 273 degrees K [J].
Giauque, WF ;
Stout, JW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1936, 58 :1144-1150
[8]   Ultrasonic study of the nonequilibrium pressure-temperature diagram of H2O ice -: art. no. 094205 [J].
Gromitskaya, EL ;
Stal'gorova, OV ;
Brazhkin, VV ;
Lyapin, AG .
PHYSICAL REVIEW B, 2001, 64 (09)
[9]   HEAT-CAPACITY AND GLASS-TRANSITION BEHAVIOR OF AMORPHOUS ICE [J].
HANDA, YP ;
KLUG, DD .
JOURNAL OF PHYSICAL CHEMISTRY, 1988, 92 (12) :3323-3325
[10]   An estimate for the Gibbs energy of amorphous solid waters and differences between the low-density amorph and glassy water [J].
Johari, GP .
JOURNAL OF CHEMICAL PHYSICS, 2000, 112 (19) :8573-8580