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1)  triple-well
三阱
1.
Based on the analysis of operation mechanism and development of the charge pump,as well as the factors limiting its efficiency and speed,a new method using triple-well structure and charge transfer switches(CTS) is suggested to eliminate threshold voltage drop and body effect.
在分析电压泵工作原理和结构演变并指出当前实现方法在驱动和响应上的制约因素的基础上,结合目前先进Flash Memory工作电压和工作要求,提出了结合三阱工艺和CTS方法以消除体效应和阈值电压降从而提高性能的四相位电荷泵设计方法,专门对时钟驱动进行的优化,提高了响应速度。
2)  triangular well
三角势阱
3)  the triple well process
三阱工艺
4)  triple-well potential
三势阱
1.
Switch effect of Bose-Einstein condensates in a triple-well potential;
三势阱中玻色-爱因斯坦凝聚的开关特性
2.
We propose a scheme utilizing mean-field approach to exhibits switch effect in a symmetrical Bose-Einstein condensates triple-well potential.
本文应用平均场近似的方法,研究了弱耦合的三势阱中玻色-爱因斯坦凝聚的开关效应。
5)  triangular quantum well
三角形势阱
1.
We have calculated the binding energy of hydrogenic donor in a triangular quantum well using variational method,The binjding energies as a function of the width of well is obtained for wells of different heights.
本文用变分法计算了三角形势阱中类氢施主杂质和激子的束缚能,给出了不同势阱深度(决定于x值)下,束缚能随阱宽(2b)变化的规律。
6)  three-grade cold trap
三级次冷阱
补充资料:单量子阱(见量子阱)


单量子阱(见量子阱)
single quantum well

单且子阱sillgle quantum well见量子阱。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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