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Optical refractive synchronization coherent information in a waveguide

机译:波导中的光折射同步相干信息

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Abstract: Fundamentally, the process of refraction is the change of energy, direction or speed of a light beam which is propagating through a medium. In the one case, the change in direction is a continuous bending of the light beam and the subsequent change of speed of the light beam which is propagating through a medium. In the one case, the change in direction is a continuous bending of the light beam and the subsequent change of speed of the light in the medium which is referred to as the index of refraction of the material. In the second case, there is the abrupt change in the index, polarity or phase of the medium which directs the energy out of the medium, or changes the ability of the light to pass through the medium, thereby absorbing the energy. The second case is the technique employed in Optical Refractive Synchronization. The light is passed through a crystal which has the refractive index changed abruptly, and subsequently the electric field, by mixing a radio frequency signal into the crystal which then creates a modulation on to the wavelength of light passing through, or absorbing, in the crystal at the frequency of the radio signal that is to be modulated onto the light beam. This Optical Modulation is performed, therefore, through the application of the refraction of the optical signal. !45
机译:摘要:从根本上讲,折射的过程是通过介质传播的光束的能量,方向或速度的变化。在一种情况下,方向的改变是光束的连续弯曲和随后传播通过介质的光束速度的改变。在一种情况下,方向的改变是光束的连续弯曲以及介质中光速的随后改变,这被称为材料的折射率。在第二种情况下,介质的折射率,极性或相位会发生突然变化,从而将能量引出介质,或者改变光通过介质的能力,从而吸收能量。第二种情况是光折射同步中使用的技术。通过将射频信号混合到晶体中,该光先通过折射率突然变化的晶体,然后通过电场,然后将其穿过电场,然后对通过或吸收在晶体中的光的波长进行调制。在要调制到光束上的无线电信号的频率上。因此,通过施加光信号的折射来执行该光调制。 !45

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