期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
差错基、量子码与群代数
1
作者 李卓 邢莉娟 《物理学报》 SCIE EI CAS CSCD 北大核心 2013年第13期86-91,共6页
本文找到了一种研究优质差错基和量子纠错码的新方法,即群代数方法,它为差错基和量子码提供了一种代数表示.利用这种代数表示,建立了一系列关于最一般量子纠错码的线性规划限.
关键词 群代数 差错基 量子纠错码 量子信息
原文传递
The influence of temperature on stacking fault energy in Fe-based alloys
2
作者 万见峰 陈世朴 徐祖耀 《Science China(Technological Sciences)》 SCIE EI CAS 2001年第4期345-352,共8页
Temperature has great influence on the stacking fault energy (SFE). Both SFE and dγ 0/dT for Fe-based alloys containing substitutional or interstitial atoms increase with increasing temperature. Based on the thermody... Temperature has great influence on the stacking fault energy (SFE). Both SFE and dγ 0/dT for Fe-based alloys containing substitutional or interstitial atoms increase with increasing temperature. Based on the thermodynamic model of SFE, the equation $\frac{{d\gamma _0 }}{{dT}} = \frac{{d\gamma ^{ch} }}{{dT}} + \frac{{d\gamma ^{se\user1{g}} }}{{dT}} + \frac{{d\gamma ^{MG} }}{{dT}}$ and those expressions for three items involved are established. The calculatedγ 0/dT is generally consistent with the experimental. The influence of chemical free energy on the temperature dependence of SFE is almost constant, and is obviously stronger than that of magnetic and segregation contributions. The magnetic transition and the segregation of alloying elements at stacking faults cause a decrease in SFE of the alloys when temperature increases; that is, dγ MG/dT<0 and dγ seg/dT<0. Meanwhile, such an influence decreases with increasing temperature, except for the dγ seg/dT} of Fe?Mn?Si alloys. With these results, the experimental phenomena that the SFE of Fe-based alloys is not zero at the thermo-dynamically equilibrated temperature (T 0) of the λ and ε phases and they are positive both atT>T 0 andT<T 0 can be reasonably explained. 展开更多
关键词 stacking fault energy (SFE) TEMPERATURE Fe-based alloys SEGREGATION magnetic contribution
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部