中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Longitudinal sound velocities, elastic anisotropy, and phase transition of high-pressure cubic H2O ice to 82 GPa

文献类型:期刊论文

作者Kuriakose, Maju; Raetz, Samuel; Hu, Qing Miao; Nikitin, Sergey M.; Chigarev, Nikolay; Tournat, Vincent; Bulou, Alain; Lomonosov, Alexey; Djemia, Philippe; Gusev, Vitalyi E.
刊名AMER PHYSICAL SOC
出版日期2017-10-30
卷号96期号:13页码:-
ISSN号2469-9950
英文摘要Water ice is a molecular solid whose behavior under compression reveals the interplay of covalent bonding in molecules and forces acting between them. This interplay determines high-pressure phase transitions, the elastic and plastic behavior of H2O ice, which are the properties needed for modeling the convection and internal structure of the giant planets and moons of the solar system as well as H2O-rich exoplanets. We investigated experimentally and theoretically elastic properties and phase transitions of cubic H2O ice at room temperature and high pressures between 10 and 82 GPa. The time-domain Brillouin scattering (TDBS) technique was used to measure longitudinal sound velocities (V-L) in polycrystalline ice samples compressed in a diamond anvil cell. The high spatial resolution of the TDBS technique revealed variations of V-L caused by elastic anisotropy, allowing us to reliably determine the fastest and the slowest sound velocity in a single crystal of cubic H2O ice and thus to evaluate existing equations of state. Pressure dependencies of the single-crystal elastic moduli C-ij (P) of cubic H2O ice to 82 GPa have been obtained which indicate its hardness and brittleness. These results were compared with ab initio calculations. It is suggested that the transition from molecular ice VII to ionic ice X occurs at much higher pressures than proposed earlier, probably above 80 GPa.; Water ice is a molecular solid whose behavior under compression reveals the interplay of covalent bonding in molecules and forces acting between them. This interplay determines high-pressure phase transitions, the elastic and plastic behavior of H2O ice, which are the properties needed for modeling the convection and internal structure of the giant planets and moons of the solar system as well as H2O-rich exoplanets. We investigated experimentally and theoretically elastic properties and phase transitions of cubic H2O ice at room temperature and high pressures between 10 and 82 GPa. The time-domain Brillouin scattering (TDBS) technique was used to measure longitudinal sound velocities (V-L) in polycrystalline ice samples compressed in a diamond anvil cell. The high spatial resolution of the TDBS technique revealed variations of V-L caused by elastic anisotropy, allowing us to reliably determine the fastest and the slowest sound velocity in a single crystal of cubic H2O ice and thus to evaluate existing equations of state. Pressure dependencies of the single-crystal elastic moduli C-ij (P) of cubic H2O ice to 82 GPa have been obtained which indicate its hardness and brittleness. These results were compared with ab initio calculations. It is suggested that the transition from molecular ice VII to ionic ice X occurs at much higher pressures than proposed earlier, probably above 80 GPa.
学科主题Physics, Condensed Matter
语种英语
资助机构ANR BLANC (France); MoST of China [2016CB644001]; NSFC [51271181]
公开日期2018-01-10
源URL[http://ir.imr.ac.cn/handle/321006/79030]  
专题金属研究所_中国科学院金属研究所
通讯作者Gusev, VE (reprint author), Univ Maine, LAUM, UMR CNRS 6613, Ave Olivier Messiaen, F-72085 Le Mans, France.; Zerr, A (reprint author), Univ Paris 13, LSPM, UPR CNRS 3407, Ave JB Clement, F-93430 Villetaneuse, France.
推荐引用方式
GB/T 7714
Kuriakose, Maju,Raetz, Samuel,Hu, Qing Miao,et al. Longitudinal sound velocities, elastic anisotropy, and phase transition of high-pressure cubic H2O ice to 82 GPa[J]. AMER PHYSICAL SOC,2017,96(13):-.
APA Kuriakose, Maju.,Raetz, Samuel.,Hu, Qing Miao.,Nikitin, Sergey M..,Chigarev, Nikolay.,...&Zerr, A .(2017).Longitudinal sound velocities, elastic anisotropy, and phase transition of high-pressure cubic H2O ice to 82 GPa.AMER PHYSICAL SOC,96(13),-.
MLA Kuriakose, Maju,et al."Longitudinal sound velocities, elastic anisotropy, and phase transition of high-pressure cubic H2O ice to 82 GPa".AMER PHYSICAL SOC 96.13(2017):-.

入库方式: OAI收割

来源:金属研究所

浏览0
下载0
收藏0
其他版本

除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。