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Optical fiber design and the trapping of Cerenkov radiation

机译:光纤设计和切伦科夫辐射的俘获

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Cerenkov radiation is generated in optical fibers immersed in radiation fields and can interfere with signal transmission. We develop a theory for predicting the intensity of Cerenkov radiation generated within the core of a multimode optical fiber by using a ray optic approach and use it to make predictions of the intensity of radiation transmitted down the fiber in propagating modes. The intensity transmitted down the fiber is found to be dominated by bound rays with a contribution from tunneling rays. It is confirmed that for relativistic particles the intensity of the radiation that is transmitted along the fiber is a function of the angle between the particle beam and the fiber axis. The angle of peak intensity is found to be a function of the fiber refractive index difference as well as the core refractive index, with larger refractive index differences shifting the peak significantly toward lower angles. The angular range of the distribution is also significantly increased in both directions by increasing the fiber refractive index difference. The intensity of the radiation is found to be proportional to the cube of the fiber core radius in addition to its dependence on refractive index difference. As the particle energy is reduced into the nonrelativistic range the entire distribution is shifted toward lower angles. Recommendations on minimizing the quantity of Cerenkov light transmitted in the fiber optic system in a radiation field are given.
机译:切伦科夫辐射在浸没在辐射场中的光纤中产生,并且会干扰信号传输。我们开发了一种理论,通过使用射线光学方法来预测在多模光纤的纤芯内产生的切伦科夫辐射的强度,并将其用于预测传播模式下沿光纤传输的辐射强度。发现沿光纤传输的强度受束缚射线的支配,其中有隧穿射线的影响。可以肯定的是,对于相对论粒子,沿着光纤传输的辐射强度是粒子束与光纤轴之间夹角的函数。发现峰值强度的角度是纤维折射率差以及纤芯折射率的函数,其中较大的折射率差将峰值显着移向较小的角度。通过增加纤维折射率差,分配的角度范围在两个方向上也显着增加。除了对折射率差的依赖性外,还发现辐射强度与纤芯半径的立方成正比。随着粒子能量减少到非相对论范围内,整个分布都朝着较小的角度移动。给出了在辐射场中最小化在光纤系统中传输的切伦科夫光的数量的建议。

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