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1)  laser energy deposition
激光能量沉积
1.
But the equation for laser energy deposition used in our presentcode is divergent on the critical surface.
目前激光靶物理研究使用的激光能量沉积方程在临界面处发散,讨论了造成这一非物理结果的原因,给出了合理的激光强度方程,并讨论了新旧两种激光强度方程对激光吸收的影响。
2)  laser deposition
激光沉积
1.
The behaviors of the Nb,Ti,Al mixed powder stream concentration from a coaxial laser deposition nozzle and the molten pool in laser deposition process in the controlled environment chamber have been observed and analyzed with a charge coupled device(CCD) camera.
根据微粒光散射理论对CCD拍摄的粉末流图像进行分析,得出了不同位置处粉末流的分布模型,并结合实验获取了用于激光沉积的同轴送粉喷嘴到沉积表面的适用距离区间。
2.
Buffer layers of MgO(or CeO2)were first deposited on silicon substrates,and then BaTiO3(BTO)ferroelectric films were formed again by pulsed laser deposition.
采用脉冲激光沉积方法,在硅基片上先沉积 MgO 或 CeO2缓冲层后再制备 BaTiO3 (BTO)铁电薄膜。
3.
Nanocomposite films composed of Ag particles embedded in BaTiO_3 matrix were grown on MgO(100) substrates by pulsed laser deposition.
在MgO(100)基片上利用脉冲激光沉积技术制备了掺有Ag纳米颗粒的BaTiO3复合薄膜。
3)  Energy deposition
能量沉积
1.
Energy deposition and radiation effect in MOS structure irradiated with electron beams;
电子束在MOS结构中的能量沉积与辐照效应
2.
Calculation of energy deposition in electronically irradiated SiO_2;
电子辐照SiO_2能量沉积计算方法研究
3.
A calculation and comparison of energy deposition irradiation-induced by different sources in silicon;
不同粒子在硅中能量沉积的计算及比较
4)  energy deposit
能量沉积
1.
Geant4 toolkit for Monte Carlo simulation is used in high energy heavy ion energy deposition simulation.
对铁离子在水中产生的能量沉积和铁离子与水介质发生核反应后产生的次级碎片的能量沉积进行了模拟研究,得到了通过核反应过程产生次级粒子所导致的剂量贡献。
5)  deposited energy
能量沉积
1.
Through simulating electrons scattering progress and deposited energy distribution,the authors found that the low-energy electron beam is the evident mode of exposure, because low-energy electrons lost a large part of energies in PMMA.
通过统计电子的能量沉积分布,发现低能电子的大部分能量沉积在光刻胶中而非衬底,所以在电子束光刻中有着更高的效率。
2.
The process of deposited energy in sensitive volumes in a static random access memory (SRAM) chip induced by 10—20MeV neutrons is simulated using the Monte Carlo method.
利用蒙特卡罗(MonteCarlo)方法,对10—20MeV中子在静态随机存储器(SRAM)中引起的单粒子翻转进行了模拟,着重对中子在SRAM灵敏区引起的电离能量沉积进行了计算,并对中子引起单粒子翻转过程相关物理量进行了计算。
3.
It can provide statistic information about the deposited energy for understanding the random process of the single event upset.
基于Monte Carlo计算模拟,对10-20MeV中子引起存储器单粒子翻转能量沉积进行了统计分析,为了解单粒子翻转随机过程提供能量沉积统计信息。
6)  laser micro-deposition
激光微沉积
1.
In order to fabricate fine thin parts with uniform thickness and good bonding strength directly,the effect of processing parameters on wall thickness uniformity and stability of the process during laser micro-deposition of metallic powder from StelliteF alloy is investigated experimentally.
为了直接制备出壁厚均匀的精细薄壁零件,试验研究了激光微沉积StelliteF合金粉末的工艺参数对壁厚均匀性及沉积过程稳定性的影响。
补充资料:能量沉积
分子式:
CAS号:

性质:是一种能量给出的过程,在这个过程中射线把自己的能量传递给一个特定体积的物质;能量给予的方式是通过射线本身或伴生的次级粒子使物质分子电离或激发。

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