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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >High-Power, Low-Noise 1.5-μm Slab-Coupled Optical Waveguide (SCOW) Emitters: Physics, Devices, and Applications
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High-Power, Low-Noise 1.5-μm Slab-Coupled Optical Waveguide (SCOW) Emitters: Physics, Devices, and Applications

机译:高功率,低噪声,1.5μm平板耦合光波导(SCOW)发射器:物理,器件和应用

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We review the development of a new class of high-power, edge-emitting, semiconductor optical gain medium based on the slab-coupled optical waveguide (SCOW) concept. We restrict the scope to InP-based devices incorporating either InGaAsP or InGaAlAs quantum-well active regions and operating in the 1.5-μm -wavelength region. Key properties of the SCOW gain medium include large transverse optical mode dimensions ( >5 × 5 μm), ultralow optical confinement factor ( Γ ∼ 0.25–1%), and small internal loss coefficient ( α$_i$ ∼ 0.5 cm$^{-1}$). These properties have enabled the realization of 1) packaged Watt-class semiconductor optical amplifers (SOAs) having low-noise figure (4–5 dB), 2) monolithic passively mode-locked lasers generating 0.25-W average output power, 3) external-cavity fiber-ring actively mode-locked lasers exhibiting residual timing jitter of <10 fs (1 Hz to Nyquist), and 4) single-frequency external-cavity lasers producing 0.37-W output power with Gaussian (Lorentzian) linewidth of 35 kHz (1.75 kHz) and relative intensity noise (RIN) <$-$ 160 dB/Hz from 200 kHz to 10 GHz. We provide an overview the SCOW design principles, describe simulation results that quantify the performance limitations due to confinement factor, linear optical loss mechanisms, and nonlinear two-photon absorption (TPA) loss, and review the SCOW devices that have been demonstrated and applications that these devices are expected to enable.
机译:我们回顾了基于平板耦合光波导(SCOW)概念的新型高功率,边缘发射半导体光增益介质的开发。我们将范围限制为结合InGaAsP或InGaAlAs量子阱有源区并在1.5μm波长范围内运行的基于InP的器件。 SCOW增益介质的关键特性包括较大的横向光学模式尺寸(> 5×5μm),超低的光学限制因子(Γ〜0.25-1%)和小的内部损耗系数(α$ _i $〜0.5 cm $ ^ { -1} $)。这些特性使得能够实现1)具有低噪声系数(4-5 dB)的封装的Watt级半导体光放大器(SOA),2)产生0.25W平均输出功率的单片无源锁模激光器,3)外部腔光纤环有源锁模激光器,其残留定时抖动小于10 fs(1 Hz至Nyquist),以及4)单频外腔激光器,其输出功率为0.37 W,高斯(洛伦兹)线宽为35 kHz (1.75 kHz)和相对强度噪声(RIN)在200 kHz至10 GHz之间<$-$ 160 dB / Hz。我们提供了SCOW设计原理的概述,描述了模拟结果,这些结果量化了由于限制因素,线性光学损耗机制和非线性双光子吸收(TPA)损耗而导致的性能限制,并回顾了已证明的SCOW器件及其应用。这些设备有望启用。

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