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莱塞加热
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     By using a diamond anvil cell with ruby fluorescence pressure calibration system and a YAG laser, polycrystaliine CaTiO3 (perovskite) was investigated under static pressure up to 38 GPa and temperature up to 1000℃.
     高温高压条件下对钙钛矿(Perovstsite)多晶进行了研究,在金刚石压砧设备上压力条件最高达38GPa,YAG莱塞加热温度近1000℃以上,用红宝石萤光校压系统进行压力标定。
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     A Direct-column-heating Controller for Programmable Process Chromatographs
     直接加热温度控制器
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     heating temperature(T) 11000C ;
     加热温度(T)1100℃;
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     By using a diamond anvil cell with ruby fluorescence pressure calibration system and a YAG laser, polycrystaliine CaTiO3 (perovskite) was investigated under static pressure up to 38 GPa and temperature up to 1000℃.
     高温高压条件下对钙钛矿(Perovstsite)多晶进行了研究,在金刚石压砧设备上压力条件最高达38GPa,YAG莱塞加热温度近1000℃以上,用红宝石萤光校压系统进行压力标定。
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  laser heating
The development of new investigation methods involving the use of laser heating and in situ diagnostics with the aid of X-radiation has promoted the studies into the solid phase structure under conditions of static compression in diamond anvils.
      
The experimental procedure involving pulsed laser heating is realized, which enables one to investigate phase transformations in graphite and eliminates the homogeneous condensation of carbon vapor over a sample.
      
The dynamics of expansion of gas and condensed particles under conditions of local laser heating of metal surface
      
This pressure is caused by, first, the small radius of nanoparticles and, second, the pressure of the surrounding-liquid vapors upon the laser heating of nanoparticles.
      
Deformation of the Raman scattering spectrum of Ih ice under local laser heating near 0°C
      
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By using a diamond anvil cell with ruby fluorescence pressure calibration system and a YAG laser, polycrystaliine CaTiO3 (perovskite) was investigated under static pressure up to 38 GPa and temperature up to 1000℃. In situ X-ray diffraction data reveals that at room temperature, orthorhombic CaTiO3(1) transforms into hexagonal CaTiO3 (II) at 10 GPa with a volume change of 1.6%; at 1000℃ and non-hydrostatic environment, orthorhombic CaTiO, (I) transforms into tetragonal CaTiO3 (III) at 8.5GPa and then into hexagonal...

By using a diamond anvil cell with ruby fluorescence pressure calibration system and a YAG laser, polycrystaliine CaTiO3 (perovskite) was investigated under static pressure up to 38 GPa and temperature up to 1000℃. In situ X-ray diffraction data reveals that at room temperature, orthorhombic CaTiO3(1) transforms into hexagonal CaTiO3 (II) at 10 GPa with a volume change of 1.6%; at 1000℃ and non-hydrostatic environment, orthorhombic CaTiO, (I) transforms into tetragonal CaTiO3 (III) at 8.5GPa and then into hexagonal CaTiO3 (II) at 15GPa with volume changes of 0 % and 1.6% respectively. All these three high pressure polymorphs occured in the study are non-quenchable.The isothermal compression of orthorhombic CaTiO3 was performed under standard hydrostatic environment with pressures not greater than 10.4GPa. By assuming K0' =5. 6, which was obtained on SrTiO3 perovskite ultrasonically. the value of bulk modulus K0 was calculated to be 210±7GPa by using Birch -Murnaghan equation.

高温高压条件下对钙钛矿(Perovstsite)多晶进行了研究,在金刚石压砧设备上压力条件最高达38GPa,YAG莱塞加热温度近1000℃以上,用红宝石萤光校压系统进行压力标定。实验结果表明静水压条件X射线就位测量,CaTiO_3(Ⅰ)由斜方晶系在10GPa时直接向六方CaTiO_3(Ⅱ)结构相变,体积变化为1.6%;1000℃加热及非静水压条件下,CaTiO_3(Ⅰ)由斜方晶系首先转变为四方晶系CaTiO_3(Ⅲ)转变压力为8.5GPa,体积变化0%,继续增加压力到15GPa,CaTiO_1(Ⅲ)向CaTiO_3(Ⅱ)转化成六方晶系,体积变化亦为1.6%。三种高压相,在压力降到一个大气压时都会消失,所以是逆转化的非淬火相。 等温压缩在标准静水压条件下进行,压力应小于10.4GPa,K_0~'=5.6时,X_o=210±7GPa,此数据是根据Birch-Murnaghan状态方程求得的体模重。

 
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