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诱导光学
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  induced optical
     The mechanism of ultrashort laser interacting with biological tissues was investigated in detail and a model has been developed to calculate irradiance thresholds for laser induced optical breakdown in biological soft tissues.
     研究了超快脉冲激光与生物组织相互作用的机理 ,建立了生物软组织中激光诱导光学击穿模型 ;
短句来源
     The mechanism of ultrashort laser interacting with biological tissues is investigated in detail and a model has been developed to calculate irradiance thresholds for laser induced optical breakdown in biological soft tissues.
     详细研究了超短脉冲激光与生物组织相互作用的机理 ,建立了生物软组织中激光诱导光学击穿模型 ;
短句来源
  “诱导光学”译为未确定词的双语例句
     Study on Field Effects and Threshold Testing of High Power Laser-Induced-Damage in Optical Components
     高功率激光诱导光学元件损伤场效应及阈值测试研究
短句来源
     Some recent work on weak-light nonlinear optics is presented,such as the defect structure in weak-light nonlinear photonic materials,light propagation dynamics in mesoscopic quantum coherent ensemble,optical nonlinearity at ultraslow group velocity of light and so on.
     简要介绍了弱光非线性光学领域中一些研究方向的进展,如弱光非线性光子学材料中的缺陷结构、介观量子相干系统中光传播动力学和慢光非线性光学等,着重描述了近期在新型激子与紫外弱光非线性光学效应、位相耦合与光速调控以及非相干空间孤子阵列诱导光学晶格与光非线性传输行为等研究中得到的研究结果。
短句来源
     OPTICAL DIODE EFFECT INDUCED BY USING TWO LASER BEAMS IN Mn DOPED KNSBN CRYSTAL
     掺锰的钾钠铌酸锶钡晶体中双光束诱导光学二极管效应
短句来源
     Analysis of uncertainty of measured laser-induced damage threshold
     高功率激光诱导光学元件损伤阈值测量的不确定度分析
短句来源
     Experiment research on femtosecond-laser-induced optical micro-cavity in transparent materials
     飞秒激光在透明介质中诱导光学微腔的实验研究
短句来源
  相似匹配句对
     Optical Gvroscope
     光学陀螺
短句来源
     Optics Letters
     光学快报
短句来源
     in troducing stimulus;
     诱导刺激;
短句来源
     Optical Analysis of the Plasma Induced by the Laser Micromachining
     激光加工过程中激光诱导等离子体的光学研究
短句来源
     Relations between the Laser Induced Damage to Optical Thin Film and the Material Band Gap
     光学薄膜的激光诱导损伤与材料带隙的关系
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  induced optical
The induced optical absorption spectra of γ-irradiated fluoroaluminate glasses doped with Eu3+ and Sm3+ ions are investigated.
      
It is revealed that the induced optical absorption spectra of the glass samples heat treated at T = 583°C contain two absorption bands with maxima at 300 and 480 nm, which correspond to radiation-reduced (Sm3+)-.
      
The induced optical and EPR absorption spectra of phosphate and fluoride glasses containing lead are investigated.
      
It is demonstrated that these groupings are responsible for the induced optical absorption in the near-IR spectral range.
      
A measuring system has been developed to investigate the characteristics of radiation-induced optical absorption and radioluminescence in the spectral range of 400-1000 nm for a set of optical fibers being irradiated by fast neutrons and γ rays.
      
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A new technique magnetization induced optical second harmonic generation,which uses nonlinear optical effects for magnetic studies.It is one of the few techniques that can be used to study the buried interface of magnetic multilayers, and has become a powerful tool for studying magnetic films due to its extreme sensitivity in detecting interface symmetry and interface magnetic structure.

介绍一种新近发展起来的,利用光学非线性效应来进行磁学测量的实验方法———磁诱导的光学二次谐波.该方法不仅对于表面的对称性及磁性结构具有极高的探测灵敏度,更重要的是它还是现在极少数可对多层薄膜的界面进行研究的技术,这为当今非常活跃的磁性单层、多层膜的研究工作提供了一个强有力的手段.

The mechanism of ultrashort laser interacting with biological tissues was investigated in detail and a model has been developed to calculate irradiance thresholds for laser induced optical breakdown in biological soft tissues. Calculation results has shown that for nanosecond or subnanosecond laser pulses,initial heating electrons in strongly absorbing media contributes significantly to avalanche ionization and optical breakdown threshold decreases with increasing tissue absorbance;for subpicosecond laser pulses,multiphoton...

The mechanism of ultrashort laser interacting with biological tissues was investigated in detail and a model has been developed to calculate irradiance thresholds for laser induced optical breakdown in biological soft tissues. Calculation results has shown that for nanosecond or subnanosecond laser pulses,initial heating electrons in strongly absorbing media contributes significantly to avalanche ionization and optical breakdown threshold decreases with increasing tissue absorbance;for subpicosecond laser pulses,multiphoton ionization is the main mechanism for optical breakdown which is insensitive to linear absorption. When reached breakdown threshold,laser energy deposited in thin layer with thickness of 1μm. For laser energy much higher than breakdown threshold,the effective light penetration depth decreased.

研究了超快脉冲激光与生物组织相互作用的机理 ,建立了生物软组织中激光诱导光学击穿模型 ;结果表明 ,对于纳秒或亚纳秒脉冲激光 ,强吸收介质的热电子发射对电子雪崩电离过程有很大影响 ,等离子体光学击穿阈值随生物组织吸收的增加而降低 ;在激光脉宽为亚皮秒量级时 ,多光子电离成为光学击穿的主要机制 ,介质的击穿阈值几乎与线性吸收系数无关。在达到光学击穿阈值时 ,激光能量沉积在厚度约 1μm的薄层之内 ;随着激光能量显著超过击穿阈值 ,有效的激光透过深度减小。

The mechanism of ultrashort laser interacting with biological tissues is investigated in detail and a model has been developed to calculate irradiance thresholds for laser induced optical breakdown in biological soft tissues.Calculation results has shown that for nanosecond or subnanosecond laser pulses,initial heating electrons in strongly absorbing media contributes significantly to avalanche ionization and optical breakdown threshold decreases with increasing tissue absorbance;for subpicosecond laser pulses,multiphoton...

The mechanism of ultrashort laser interacting with biological tissues is investigated in detail and a model has been developed to calculate irradiance thresholds for laser induced optical breakdown in biological soft tissues.Calculation results has shown that for nanosecond or subnanosecond laser pulses,initial heating electrons in strongly absorbing media contributes significantly to avalanche ionization and optical breakdown threshold decreases with increasing tissue absorbance;for subpicosecond laser pulses,multiphoton ionization is the main mechanism for optical breakdown which is insensitive to linear absorption.When reached breakdown threshold,laser energy is deposited in thin layer with thickness of 1μm.For laser energy much higher than breakdown threshold,the effective light penetration depth is reduced.

详细研究了超短脉冲激光与生物组织相互作用的机理 ,建立了生物软组织中激光诱导光学击穿模型 ;结果表明 ,对于纳秒或亚纳秒脉冲激光 ,强吸收介质的热电子发射对电子雪崩电离过程有很大影响 ,等离子体光学击穿阈值随生物组织吸收的增加而降低 ;在激光脉宽为亚皮秒量级时 ,多光子电离成为光学击穿的主要机制 ,介质的击穿阈值几乎与线性吸收系数无关

 
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