1) Lattice damage
晶格损伤
1.
Investigation of Electro-Optic Properties and Lattice Damage Distribution of Ion Implanted Waveguides in Lithium Niobate;
离子注入铌酸锂光波导电光特性改变及晶格损伤分布研究
2.
Range distribution and lattice damage have been investigated using Rutherford backscattering and channelling technique in 350keV Yb ̄+-implanted Si(100).
用350keVYb~+在室温下注入了单晶硅,并用卢瑟福背散射/沟道技术测量了注入离子在硅中的射程分布谱和晶格损伤谱。
3.
The lattice damage in GsAs irradiated by 1MeV Si ̄(+) at room temperature and elevated substrate temperature has been investigated using Rutherford backscattering/channeling technique.
用卢瑟福背散射/沟道技术研究了1MeVSi ̄+在350℃高温和室温下以不同剂量注入GaAs后的晶格损伤。
2) grain boundary damage
晶界损伤
1.
Intergranular failure analysis of retaining ring steel 50Mn_(18)Cr_4 and explore for the essence of grain boundary damage;
护环钢50Mn_(18)Cr_4沿晶断裂分析及其对晶界损伤本质的探讨
2.
Effect of grain boundary damage on stress field of the crack tip;
晶界损伤对裂尖应力场的影响分析
3) crystal damage
结晶损伤
4) Lens lesion
晶体损伤
6) injuried lens
晶状体损伤
1.
Objective To study the effects of injuried lens on the survival of retinal ganglial cells of rat.
目的研究晶状体损伤对视网膜神经节细胞存活的影响。
补充资料:A和B交替生长的超晶格结构
A和B交替生长的超晶格结构
A和B交替生长的超晶格结构层厚:黑2帆A 白30A B中周科学院十导体研究所供稿
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条