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Micro-integrated extended cavity diode laser with integrated optical amplifier for precision spectroscopy in space

机译:微集成延伸腔二极管激光器,具有集成光放大器,用于空间精密光谱

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Summary form only given. GaAs diode laser-based hybrid micro-integration technology meets the demand for precision spectroscopy applications in space for compact, robust, and energy-efficient laser modules. It supports applications at wavelengths ranging from 630 nm to 1200 nm and is already used for quantum optics experiments in space [1].Here, we present a narrow linewidth, high power extended cavity diode laser (ECDL) master oscillator power amplifier (MOPA) laser module (see Fig. 1) for operation as local oscillator of an iodine-based frequency reference on board a sounding rocket. The laser module is based on a versatile technology platform which facilitates integration of any two chips, either active (e.g. laser, amplifier) or passive (e.g. phase modulator) in a single laser module. The module utilizes a micro-optical bench (MioB) consisting of structured aluminium nitride substrates which are encapsulated into a hermetically sealed Kovar housing. The MioB accommodates an ECDL, a tilted ridge-waveguide PA chip, electronics, and fiber coupling assembly to couple light into a single mode, polarization maintaining optical fiber. The footprint of the MioB is 80 x 30 mm2. The cavity of the ECDL is formed by a volume holographic Bragg grating (VHBG) and the front facet of a ridge-waveguide laser chip. The main output of the ECDL is collimated by micro-optical lenses, passed through a micro-optical isolator, and injected into the PA chip by micro-optical lenses. The output of the PA chip is collimated by an aspheric lens, passed through a thin film polarizer and coupled into a single mode, polarization maintaining optical fiber. The laser module features a mass of 750 g, and its form factor corresponds to 125 x 75 x 22.5 mm2.
机译:摘要表格仅给出。 GaAs二极管激光的混合微集成技术符合紧凑,坚固耐用和节能激光模块的空间中精密光谱应用的需求。它支持从630nm到1200nm的波长的应用,并且已经用于空间的量子光学实验[1]。该,我们呈现窄线宽,高功率扩展腔二极管激光器(ECDL)主振荡器功率放大器(MOPA)激光模块(参见图1),用于操作作为探测火箭的碘基频率参考的本地振荡器。激光模块基于多功能技术平台,便于在单个激光模块中的任何两个芯片的整合,有源(例如激光器,放大器)或被动(例如相位调制器)。该模块利用由结构化的氮化铝基材组成的微光学台(MIOB),该氮化铝基材包封在气密密封的KOVAR壳体中。 MIOB可容纳ECDL,倾斜的脊 - 波导PA芯片,电子器件和光纤耦合组件,以将光耦合成单一模式,偏振保持光纤。 MIOB的占地面积为80 x 30 mm2。 ECDL的腔由脊波导激光芯片的体积全息布拉格光栅(VHBG)和前方形成。 ECDL的主输出由微光学透镜通过微光学隔离器通过,并通过微光学镜头注入PA芯片。 PA芯片的输出由非球面透镜准直,通过薄膜偏振器并耦合成单一模式,偏振保持光纤。激光模块具有750克的质量,其形状因子对应于125×75×22.5mm2。

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