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Investigations of laser oscillation and switching using a resonance at the band edge crossover in an hetero-structure of one-dimensional photonic crystals

机译:研究一维光子晶体异质结构中带边交叉处的共振引起的激光振荡和切换

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This paper presents a theoretical investigation of a laser oscillator and a laser switch, using a hetero-structure made of two one-dimensional photonic crystals with active materials and a period ratio of r (r > 1). Lasing is achieved near frequencies where the upper and lower band edges of the adjacent photonic crystals overlap (i.e. band edge resonance). Near the band edge resonance, two modes of laser oscillations are found; mode A - the threshold gain increases with r and mode B - the threshold gain decreases with r. By assuming a homogenously broadened gain medium at any particular r, only one of the two modes is able to participate in lasing. We also found the lasing mode is switchable upon a very small alteration in the refractive index of the materials present in the photonic crystal. The results of the paper will be very useful for designing a new class of tunable lasers and high sensitivity sensors.
机译:本文介绍了一种激光振荡器和激光开关的理论研究,它使用了由两个一维光子晶体和活性物质组成的异质结构,周期比为r(r> 1)。在相邻光子晶体的上下频带边缘重叠(即频带边缘共振)的频率附近实现激射。在带边共振附近,发现了两种激光振荡模式;模式A-阈值增益随r增大,而模式B-阈值增益随r减小。通过假设在任何特定r处均一扩展的增益介质,两种模式中只有一种能够参与激射。我们还发现,当光子晶体中存在的材料的折射率发生非常小的变化时,激光模式是可切换的。本文的结果对于设计新型的可调激光器和高灵敏度传感器将非常有用。

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