1) trap
光阱式
1.
A trap optical detector has the advantages of enhancing a response signal and reducing the reflectance of the measured signal.
光阱式光探测器的优点是增大响应信号,减小测量信号的反射比,因而问世20年来应用大增。
2) optical trap
光阱
1.
Mechanical effects of light and measurement of optical trapping force;
光的力学效应及光阱力的测量
2.
During setting up this system, transverse position mainpulating system of an optical trap was studied especially.
在光镊的研制过程中 ,我们重点对光阱的横向位置操纵系统进行了研究。
3.
Optical tweezers,also known as single beam gradient force optical trap,rely upon the extremely high gradient in the electric field produced near the beam waist of a highly focused laser beam,which creates Pico-Newton force sufficient enough to trap small particles in three dimensions.
光镊即单光束梯度力光阱是通过在高度会聚的激光束束腰附近所产生的极高的场强梯度来形成皮牛顿量级的力,可以三维地捕获和操纵微小粒子。
3) light trap
光阱
1.
In the article the effect of the light trap absorbance on the haze measurement have been analysed.
分析了光阱吸收比对雾度测量的影响 ,推导出光阱吸收比给测量带来的系统误差的计算公
4) optical trap force
光阱力
1.
Capture the cell among the suspension using the optical trap force of tweezers system before the electric field being added,and then add and increase th.
在外加电场力为零时利用激光的陷阱力捕获该细胞,然后施加并逐渐加大外加电场力,直到细胞刚好逃脱光阱力的束缚时的瞬间光阱力,理论上就是细胞所带电荷在电场中产生的库仑力与粘滞力之和。
2.
A new experimental method for calibration of optical trap force upon cells was proposed based on the theory of cells electrophoresis.
提出了一种新的细胞光阱力标定的实验方法,利用细胞电泳原理,设计并研制了一套符合用光镊测力的电动样品池系统,用它替代单光镊操作系统中的普通样品池和高精密压电位移驱动平台,可以用电压调控细胞运动速度,系统相对简单、经济。
5) MOT
磁光阱(MOT)
6) optical trapping force
光阱力
1.
The calculation and numerical simulation on optical trapping force in lateral way of One-beam laser optical tweezers;
单光束光镊横向光阱力的计算与仿真分析
2.
In laser field,based on the theory of geometric optics,the optical trapping force which is in y axis way apply on the micro sphere particles lurid cell in the Mie scattering field is calculated quantitatively.
在强聚焦激光光场中,以射线光学(ray-optics)计算模型为基础,对几何尺寸远大于光波长的米氏球状粒子所受激光微束横向(沿y轴方向)光阱力进行了计算。
3.
The quantitative calculation of optical trapping force, by using the ray-optics model, which is based on the theory of geometric optics, the optical trapping force on the micro-sphere particles in the Mie scattering field is calculated quantitatively.
基于几何光学原理,以射线光学计算模型为基础,对几何尺寸远大于光波长的米氏球状粒子所受轴向光阱力进行了计算。
参考词条
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。