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Effects of total pressure and gravity level on the physical vapor transport of $Hg_2Cl_2-Cl_2$ system
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  • Effects of total pressure and gravity level on the physical vapor transport of $Hg_2Cl_2-Cl_2$ system
  • Effects of total pressure and gravity level on the physical vapor transport of $Hg_2Cl_2-Cl_2$ system
저자명
Choi. Jeong-Gi,Kwon. Moo-Hyun,Kim. Geug-Tae
간행물명
한국결정성장학회지
권/호정보
2009년|19권 3호|pp.116-124 (9 pages)
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한국결정성장학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Our computational studies for the physical vapor transport crystal growth of $Hg_2Cl_2-Cl_2$ system evidence suggests that the PVT growth process exhibits the diffusion-dominated behaviors for aspect ratios more than and equal to 10, which would provide purely diffusive transport conditions adequate to microgravity environments less than $10^{-3}g_0$. Also, the regimes of high temperature difference based on the fixed source temperature of $380^{circ}C$, where ${Delta}T$ is relatively large enough for the crystal growth of mercurous chloride, the transport rates do not keep increasing with ${Delta}T$ but tend to some constant value of $2.12;mole;cm^{-2}s^{-1}$. For the aspect ratios of 5, 10, and 20, the transport rate is directly proportional to the total pressure of the system under consideration. For Ar = 5, the rate is increased by a factor of 2.3 with increasing the total pressure from 403 Torr to 935 Torr, i.e., by a factor of 2.3. For both Ar = 10 and 20, the rate is increased by a factor of 1.25 with increasing the total pressure from 403 Torr to 935 Torr.