• Compton scattering can be utilized for electron density imaging.

    利用康普顿散射光子能谱可以重建物质的电子密度图像。

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  • Compton scattering can't be understood on the basis of classical electromagnetic theory.

    康普顿散射不能根据经典电磁理论去理解。

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  • First, the thesis discusses Compton scattering energy spectral data simulation using Monte Carlo Method.

    首先,本文讨论了康普顿散射能谱的蒙特卡罗模拟方法。

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  • Compton scattering plays a very important role in X-ray imaging, it is both helpful and harmful to X-ray image contrast.

    康普顿散射在X射线成像中起着非常重要的作用,它既有助于图像对比度的形成,也可能损害图像对比度。

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  • Scattered particle detecting efficiency must be raised in order to improve the image quality of Compton scattering imaging.

    为改善康普顿背散射成象技术图象,必须提高散射粒子的检测效率。

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  • By Compton scattering of virtual photon with relativistic electron, the virtual photon can be transformed into real photon to radiate out.

    当虚光子与作沟道运动的电子发生康普顿散射时,虚光子就会转化为实光子辐射出去。

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  • The recoil angle of electron in Compton scattering is incorrect in some text books, and the right sketching of Compton scattering is presented.

    指出了某些教材中康普顿散射示意图画法的不妥之处,并严格推导了康普顿散射中反冲电子的散射角,给出了正确的康普顿散射示意图。

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  • We proposed a Compton scattering imaging model based on energy spectrum, and introduced a coupled gradient neural network implementation of this imaging problem.

    提出了基于能量谱的康普顿散射成像模型,引入一种耦合梯度神经网络实现该模型下的康普顿散射成像。

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  • We also studied backward Compton scattering in the accelerator magnetic field, and explored possible effect of space noncommutativity caused by the lowest Landau level.

    我们还研究过加速器磁场中的康普顿背散射,探索了磁场导致的空间非对易的可能效应。

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  • Considering recoil of electron, a new theory to explain axial channelling radiation is presented based on Compton scattering of virtual photon with relativistic electron.

    考虑电子的反冲的影响,利用虚光子与相对论电子的康普顿散射理论对轴沟道辐射进行了研究。

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  • Using the collision of relativistic laser and electron beam to study the nonlinear Compton scattering is the interdisciplinary frontier of particle physics and strong laser physics.

    使用相对论性强激光与电子束对撞中产生的辐射研究非线性康普顿散射是粒子物理与强激光物理两个领域的交叉前沿课题。

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  • Scattered particle detecting efficiency must be raised in order to improve the image quality of Compton scattering imaging. The ways to raise efficiency and some successful examples are given.

    为改善康普顿背散射成象技术图象,必须提高散射粒子的检测效率。本文在简述理论后列举了提高散射粒子检测效率的各种途径和国外成功例子。

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  • We proposed a Compton scattering imaging model based on energy spectrum, and introduced a coupled gradient neural network implementation of this imaging problem. Successful results were obtained.

    提出了基于能量谱的康普顿散射成像模型,引入一种耦合梯度神经网络实现该模型下的康普顿散射成像。得到了成功的结果。

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  • We discussed the inverse Compton effect of the hot electrons of the universe in scattering off the microwave background photons.

    我们讨论了宇宙热电子对宇宙微波背景的康普顿散射效应。

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  • We discussed the inverse Compton effect of the hot electrons of the universe in scattering off the microwave background photons.

    我们讨论了宇宙热电子对宇宙微波背景的康普顿散射效应。

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