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Electrical and Optical Properties of GaSe Thin Films 被引量:1
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作者 M. Ohyama(Dept. of Electrical Engineering, Tokyo National College of Technology, Tokyo, Japan) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1997年第4期299-301,共3页
The structure, electrical transport, and optical properties of GaSe films fabricated by means of radio-frequency (RF) magnetron sputtering in Ar were investigated. The as-sputtered GaSe films were amorphous, and their... The structure, electrical transport, and optical properties of GaSe films fabricated by means of radio-frequency (RF) magnetron sputtering in Ar were investigated. The as-sputtered GaSe films were amorphous, and their optical energy gap Eg are 1.9~2.6 eV. The effect of the synthesis conditions on the optical and electrical properties of the GaSe films has also been studied 展开更多
关键词 THIN gase Electrical and Optical Properties of gase Thin Films
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Optical and defect properties of S-doped and Al-doped GaSe crystals 被引量:1
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作者 黄昌保 吴海信 +2 位作者 倪友保 王振友 陈诗静 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第9期248-251,共4页
S-doped and Al-doped GaSe crystals are promising materials for their applications in nonlinear frequency conversion devices. The optical and defect properties of pure, S-doped, and Al-doped GaSe crystals were studied ... S-doped and Al-doped GaSe crystals are promising materials for their applications in nonlinear frequency conversion devices. The optical and defect properties of pure, S-doped, and Al-doped GaSe crystals were studied by using photoluminescence(PL) and Fourier transform infrared spectroscopy(FT-IR). The micro-topography of(0001) face of these samples was observed by using scanning electron microscope(SEM) to investigate the influence of the doped defects on the intralayer and interlayer chemical bondings. The doped S or Al atoms form the SSe^0 or AlGa^+1) substitutional defects in the layer GaSe structure, and the positive center of AlGa-^+1 could induce defect complexes. The incorporations of S and Al atoms can change the optical and mechanical properties of the GaSe crystal by influencing the chemical bonding of the layer structure. The study results may provide guidance for the crystal growth and further applications of S-doped and Al-doped GaSe crystals. 展开更多
关键词 doped gase crystals defect optical properties mechanical properties
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Properties of One-Dimensional Highly Polarized Fermi Gases
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作者 Ya-Dong Song Xiao-Ming Cai 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第11期6-10,共5页
Using both the exact Bethe ansatz method and the variational method, we study properties of the one-dimensional Fermi polaron. We focus on the binding energy, effective mass, momentum distributions, Tan contact and co... Using both the exact Bethe ansatz method and the variational method, we study properties of the one-dimensional Fermi polaron. We focus on the binding energy, effective mass, momentum distributions, Tan contact and correlation functions. As the attraction increases, the impurity is more tightly bound and correlated with the surrounding particles, and the size of formed polaron decreases. In addition, compared with the Bethe ansatz method, the variational method is totally qualified to study the one-dimensional Fermi polaron. The intrinsic reason is that the number of particle-hole excitations in a Fermi sea, caused by a single impurity, is always rather small. The variational method can be well extended to other impurity systems. 展开更多
关键词 Properties of One-Dimensional Highly Polarized Fermi gases AS
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Thermodynamic property of gases in the sonoluminescing bubble
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作者 AN Yu,LI Guiqin,ZHOU Tieying (Physics Department, Tsinghua University Beijing 100084) 《Chinese Journal of Acoustics》 2001年第1期66-72,共7页
With the theory of statistical physics dealing with chemical reaction (the law of mass action), the different thermodynamic property of noble gases (mono-atomic gases) in a small bubble and diatomic gases in a small b... With the theory of statistical physics dealing with chemical reaction (the law of mass action), the different thermodynamic property of noble gases (mono-atomic gases) in a small bubble and diatomic gases in a small bubble semi-quantitatively are analyzed. As bubbles of the mono-atomic and the diatomic gases are compressed, shock waves are produced in both bubbles. Though shock wave leads to sharp increase of pressure and temperature of gases in the bubble, diatomic gas will excitated vibrations and dissociate themselves to mono-atomic gas, these processes will consume many accumulated heat energy and block the further increase of the temperature. Therefore, compare with the mono-atomic gases in the bubble, there will be no enough charged particles ionized to flash for diatomic gases in the bubble, this may be the reason why a bubble of diatomic gases has no single bubble sonoluminescence while a bubble of noble gases has. 展开更多
关键词 Thermodynamic property of gases in the sonoluminescing bubble
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