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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Optical Synthesis of Terahertz and Millimeter-Wave Frequencies With Discrete Mode Diode Lasers
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Optical Synthesis of Terahertz and Millimeter-Wave Frequencies With Discrete Mode Diode Lasers

机译:离散模二极管激光器的太赫兹和毫米波频率的光学合成

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It is shown that optical synthesis of terahertz and millimeter-wave frequencies can be achieved using two-mode and mode-locked discrete mode diode lasers. These edge-emitting devices incorporate a spatially varying refractive index profile, which is designed according to the spectral output desired of the laser. We first demonstrate a device that supports two primary modes simultaneously with high spectral purity. In this case, sinusoidal modulation of the optical intensity at terahertz frequencies can be obtained. Cross saturation of the material gain in quantum-well lasers prevents simultaneous lasing of two modes with spacings in the millimeter-wave region. We show finally that by mode locking devices that are designed to support a minimal set of four primary modes, we obtain a sinusoidal modulation of the optical intensity in this frequency region.
机译:结果表明,使用双模和锁模离散二极管二极管激光器可以实现太赫兹和毫米波频率的光学合成。这些边缘发射装置结合了空间变化的折射率分布,其根据激光器所需的光谱输出而设计。我们首先演示一种同时支持两种主要模式并具有高光谱纯度的设备。在这种情况下,可以获得太赫兹频率下光强度的正弦调制。量子阱激光器中材料增益的交叉饱和阻止了同时发射毫米波区域中的两个模式的激光。最后,我们证明了通过设计为支持最小的四个主要模式集的锁模设备,我们可以在该频率范围内获得光强度的正弦调制。

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