• The results revealed that the title compound behaves obvious two-photon absorption.

    结果显示标题化合物具有很强的双光子吸收效应。

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  • The peak output intensity for Nd glass amplifiers is limited by two-photon absorption.

    光子吸收限制玻璃放大器输出峰值强度

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  • It is shown that Raman amplification can counteract the effects of two-photon absorption.

    结果表明喇曼放大可以抵消光子吸收的影响

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  • The research development of the polymers with two-photon absorption property was reviewed.

    介绍光子材料应用,综述了高聚物双光子吸收材料的研究进展情况。

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  • The effects of absorption coefficients and two-photon absorption on energy measuring are studied.

    研究了吸收体吸收系数光子吸收效应对于能量测量影响

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  • The molecule has the largest two-photon absorption cross section among its series of studied derivatives.

    分子相应系列衍生物具有最大双光子吸收截面

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  • In the first chapter, nonlinear optics and the research of two-photon absorption materials are introduced.

    第一章主要介绍了非线性光学光子吸收材料研究现状

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  • Recently, the study of organic two-photon absorption materials has become a hot issue in the field of materials.

    近年来有机双光子吸收材料研究成为材料领域研究热点之一。

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  • Nonlinear refractivity and two-photon absorption of GaP are obtained by numerical fitting the experimental results.

    通过数值拟合获得了磷化镓飞秒激光脉冲作用下非线性折射率光子吸收系数。

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  • The effects of two-photon absorption and Raman amplification on the propagation of fundamental optical solitons are studied.

    研究了光子吸收喇曼放大基本孤子传输影响

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  • The results show that the number of thiophene units affects the properties of one-photon absorption and two-photon absorption.

    结果显示噻吩单元数目影响分子的单光子光子吸收性质

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  • The nonlinear two-photon absorption of Nd ions in Nd-doped laser glasses was studied with single picosecond laser pulses from a mode-locked Nd glass laser.

    利用玻璃激光器单个微微秒激光脉冲研究了激光玻璃中钕离子非线性双光子吸收

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  • The expression of two-photon absorption probability for the decaying optical pulse series excitation is given and a simple experimental method is suggested.

    给出衰减多脉冲激发光子吸收几率表达式。 提出了一种简单易行实验方案。

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  • Results show that the two compounds are good two-photon absorption materials, and the two-photon absorption cross section of DPVMB molecule is stronger than that of PVMB molecule.

    计算结果表明化合物具有较好的光子吸收特性,且具有两分支结构DPVMB分子具有单支结构的PVMB分子有强的双光子吸收强度。

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  • We first analytically demonstrate that the four-wave mixing process in our system is equivalent to a two-photon absorption process and single photons will be obtained at the out-put.

    我们首先在耗散表象下,证明我们方案中的四波过程可以等效一个光子吸收过程,得到光子输出的解析表达式。

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  • The polymers with two-photon absorption property could be used as film because of their high intensity and tenacity. The applications of polymers with two-photon absorption were introduced.

    高聚物光子吸收材料具有强度韧性好的特征,可以状态下使用,因而具有潜在应用前景

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  • In order to investigate the effect of substituents on the two-photon absorption properties(TPA), the one-and two-photon absorption properties were theoretically studied by using ZINDO/SOS method.

    利用ZINDO/SOS方法从理论上研究了对称和不对称取代两种情况下,取代基对二噻吩并噻吩衍生物单双光子吸收性质影响

    youdao

  • In the first chapter, nonlinear optics and the research of two - photon absorption materials are introduced.

    第一章主要介绍了非线性光学光子吸收材料研究现状

    youdao

  • Second, application of two photon absorption to three dimension density optical data storage is described.

    光子吸收聚焦光束扫描存储技术中的应用

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  • The high resolution spectrum can be obtained through many methods, such as saturated absorption spectroscopy, Doppler free methods of two-photon spectroscopy, and etc.

    提高热原子光谱分辨率可以许多方法饱和吸收光谱技术、双光子光谱的消多普勒技术等。

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  • They are, 1 Two photon absorption in atomic vapor and optical pumping assisted electromagnetically induced transparency.

    原子蒸汽中的光子吸收以及辅助的电磁感应透明现象。

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  • The results show that the Doppler background due to the near resonance of the intermediate level is eliminated and the signal of two-photon transition can be distinguished from saturation absorption.

    计算结果表明它能有效地克服中间能级共振所产生背景有效地区分单光子饱和吸收讯号和双光子跃迁讯号。

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  • The results show that the Doppler background due to the near resonance of the intermediate level is eliminated and the signal of two-photon transition can be distinguished from saturation absorption.

    计算结果表明它能有效地克服中间能级共振所产生背景有效地区分单光子饱和吸收讯号和双光子跃迁讯号。

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