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    • 1. 发明授权
    • Method and apparatus for spectrally designing all-fiber filters
    • 用于光谱设计全纤滤光片的方法和装置
    • US6130973A
    • 2000-10-10
    • US48698
    • 1998-03-26
    • Jocelyn LauzonMartin GuyYves PainchaudMartin Pelletier
    • Jocelyn LauzonMartin GuyYves PainchaudMartin Pelletier
    • G02B6/34
    • G02B6/02152G02B6/02085G02B6/02138
    • A method and an apparatus to photoinduce a grating or other type of modulated refractive index change in a photosensitive optical medium such as optical fiber. The resulting grating has a variable and controllable intensity profile and average value of the index change. The modulated refractive index change is photoimprinted in the medium in a series of writing steps, each comprising exposing a segment of the medium to a writing beam for a predetermined exposure time. To change the modulation intensity from step to step, the angle of incidence of the writing beam is dithered for an appropriate fraction of the exposure time at each step. This allows to control the amount of incident light on the medium for each step. If the exposure time is the same for each writing step, the average value of the index change may be kept constant avoiding undesired structure in the grating frequency response.
    • 在诸如光纤的感光光学介质中光诱导光栅或其它类型的调制折射率变化的方法和装置。 所得到的光栅具有可变且可控的强度分布和折射率变化的平均值。 经调制的折射率变化在介质中以一系列写入步骤进行光印,每个步骤包括将介质的一段曝光到写入光束以达预定的曝光时间。 为了从步进到步骤改变调制强度,写入光束的入射角被抖动以在每个步骤的适当分数的曝光时间。 这允许在每个步骤中控制介质上入射光的量。 如果对于每个写入步骤的曝光时间相同,则可以保持索引变化的平均值,避免光栅频率响应中的不期望的结构。
    • 10. 发明授权
    • Method and phase mask for manufacturing a multi-channel optical grating
    • 用于制造多通道光栅的方法和相位掩模
    • US07352931B1
    • 2008-04-01
    • US11372454
    • 2006-03-08
    • Yves PainchaudMichel PoulinMichel Morin
    • Yves PainchaudMichel PoulinMichel Morin
    • G02B6/34
    • G02B6/02138
    • A method for manufacturing a complex multi-channel optical grating using a phase mask is presented. A plurality of sub-gratings is designed, each having an individual spectral response designed to produce one of the channels of the multi-channel grating. The target profile of the grating is determined based on the combination of the index profiles of the individual sub-gratings, the target index profile defining a target spectral response of the multi-channel grating. A modified index profile having a smooth apodization profile but providing the same spectral response as the target index profile, at least within a spectral region of interest, is determined and encoded into the phase mask. The phase mask is then used to photoinduce the grating in a photosensitive medium.
    • 提出了使用相位掩模制造复合多通道光栅的方法。 设计了多个子光栅,每个子光栅具有设计成产生多通道光栅的一个通道的单个光谱响应。 基于各个子光栅的折射率分布的组合,确定多通道光栅的目标光谱响应的目标折射率分布来确定光栅的目标轮廓。 至少在感兴趣的光谱区域内,确定具有光滑变迹曲线但是提供与目标折射率分布相同的光谱响应的经修改的折射率分布,并将其编码到相位掩模中。 然后使用相位掩模在光敏介质中对光栅进行光诱导。