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Beam steering via resonance detuning in coherently coupled vertical cavity laser arrays

机译:相干耦合垂直腔激光器阵列中通过共振失谐进行光束转向

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Coherently coupled vertical-cavity surface-emitting laser arrays offer unique advantages for nonmechanical beam steering applications. We have applied dynamic coupled mode theory to show that the observed temporal phase shift between vertical-cavity surface-emitting array elements is caused by the detuning of their resonant wavelengths. Hence, a complete theoretical connection between the differential current injection into array elements and the beam steering direction has been established. It is found to be a fundamentally unique beam-steering mechanism with distinct advantages in efficiency, compactness, speed, and phase-sensitivity to current.
机译:相干耦合的垂直腔面发射激光器阵列为非机械光束转向应用提供了独特的优势。我们已经应用了动态耦合模式理论来表明,垂直腔表面发射阵列元件之间观察到的时间相移是由其谐振波长的失谐引起的。因此,已经建立了在阵列元件中注入的差分电流与射束转向方向之间的完整理论联系。人们发现它是一种根本上独特的电子束转向机构,在效率,紧凑性,速度和对电流的相位敏感性方面具有明显的优势。

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