期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
半导体超晶格系统中的磁电调控电子自旋输运研究 被引量:2
1
作者 王如志 袁瑞玚 +2 位作者 宋雪梅 魏金生 严辉 《物理学报》 SCIE EI CAS CSCD 北大核心 2009年第5期3437-3442,共6页
通过采用转移矩阵方法求解自旋电子隧穿过程,理论研究了半导体超晶格系统中电子自旋输运的磁电调控行为.结果表明:仅对超晶格系统施以磁调制,隧穿系数将出现自旋分裂,随磁场增强,电导自旋极化率变大且展宽于费米能区;若选取不变磁场情况... 通过采用转移矩阵方法求解自旋电子隧穿过程,理论研究了半导体超晶格系统中电子自旋输运的磁电调控行为.结果表明:仅对超晶格系统施以磁调制,隧穿系数将出现自旋分裂,随磁场增强,电导自旋极化率变大且展宽于费米能区;若选取不变磁场情况,同时施以间隔周期电场调制,超晶格的电子极化率将有更为显著地提高.进一步发现,随电场强度的改变,电子自旋输运行为显然存在两个明显不同区域,下自旋电子将在不同调制区域表现为不同的变化趋势.然而,若对周期磁超晶格施加间隔两周期的电调制,自旋电导输运的临界行为消失,电导极化率在高能区的共振峰趋向消失.这也说明超晶格系统的对称性将可能对其磁电调控自旋输运行为产生重要影响. 展开更多
关键词 半导体超晶格 自旋输运 磁电调控
原文传递
多铁材料 被引量:2
2
作者 李晓光 南策文 《科学观察》 2018年第2期45-47,共3页
多铁性材料同时具有铁电、反铁磁等多种铁性序,不同序参请间耦合作用可产生磁与电间的交叉调控。
关键词 多铁性材料 产品介绍 物理性能 磁电调控
原文传递
Vehicle height and leveling control of electronically controlled air suspension using mixed logical dynamical approach 被引量:7
3
作者 SUN Xiao Qiang CAI Ying Feng +2 位作者 YUAN Chao Chun WANG Shao Hua CHEN Long 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第12期1814-1824,共11页
Vehicle height and leveling control of electronically controlled air suspension(ECAS) still poses theoretical challenges for researchers that have not been adequately addressed in prior research. This paper investigat... Vehicle height and leveling control of electronically controlled air suspension(ECAS) still poses theoretical challenges for researchers that have not been adequately addressed in prior research. This paper investigates the design and verification of a new controller to adjust the vehicle height and to regulate the roll and pitch angles of the vehicle body(leveling control) during the height adjustment procedures. A nonlinear mechanism model of the vehicle height adjustment system is formulated to describe the dynamic behaviors of the system. By using mixed logical dynamical(MLD) approach, a novel control strategy is proposed to adjust the vehicle height by controlling the on-off statuses of the solenoid valves directly. On this basis, a correction algorithm is also designed to regulate the durations of the on-off statuses of the solenoid valves based on pulse width modulated(PWM) technology, thus the effective leveling control of the vehicle body can be guaranteed. Finally, simulations and vehicle tests results are presented to demonstrate the effectiveness and applicability of the proposed control methodology. 展开更多
关键词 electronically controlled air suspension vehicle height control leveling control hybrid system mixed logical dynamical approach
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部