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Geometric frustration in large arrays of coupled lasers

机译:大阵列耦合激光器中的几何挫折

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摘要

We present a new method for phase locking several thousands of laser channels. This is achieved by incorporating all the laser channels into a common degenerate resonator that can support any transverse electric field distribution. The experimental arrangement is presented schematically in Fig. 1(A). The degenerate cavity is comprised of an Nd-Yag crystal gain medium that can support many laser channels, front and rear mirrors, and a mask of an array of N apertures arranged in a desired two dimensional lattice placed adjacent to the rear mirror. Two lenses in a 4ƒ arrangement inside the cavity ensure that any transverse electric field distribution at the mask plane is imaged onto the front mirror plane. Coupling between the lasers is introduced by increasing the distance between the rear mirror and the mask so light diffracted from each laser is coupled into its neighbouring lasers. With such an arrangement, the coupling range, strength, and sign can be readily controlled in a calibrated manner.
机译:我们提出了一种用于锁定数千个激光通道的新方法。这是通过将所有激光通道合并到可以支持任何横向电场分布的普通简并谐振器中来实现的。实验安排在图1(A)中示意性地表示。简并腔由Nd-Yag晶体增益介质组成,该介质可以支持许多激光通道,前后反射镜以及N孔阵列的掩模,这些N孔的阵列排列在与后视镜相邻的所需二维晶格中。腔内以4ƒ排列的两个透镜可确保将掩模平面上的任何横向电场分布成像到前镜平面上。通过增加后视镜和掩模之间的距离来引入激光器之间的耦合,从而使从每个激光器衍射的光耦合到其相邻激光器中。利用这种布置,可以容易地以校准的方式控制耦合范围,强度和符号。

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