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The Design and Performance Characterization of a Tunable External Cavity Quantum Cascade Laser utilizing Thermo-optically Tuned Thin Film Filters

机译:利用热光调谐薄膜滤光片的可调谐外腔量子级联激光器的设计和性能表征

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Quantum cascade lasers (QCLs) and Interband cascade lasers (ICLs) are promising new mid-IR sources for spectroscopic applications. Desirable characteristics include extremely high brightness, broad emission, very high resolution, compact size, and modest power consumption. For most spectroscopic applications, it is necessary to tune QCLs over a broad emission wavelength range. The conventional approach for broad tuning is to use an external cavity (EC) which incorporates a mechanically tuned diffraction grating within the laser cavity. In this paper we will describe an alternative approach to EC-QCL tuning which utilizes miniature, thermally tuned, MEMS fabricated filters, allowing for a very compact, simple, mechanically stable package with no moving parts. The system is well suited for discrete measurements at multiple wavelengths as needed by many of the industrial spectroscopic analyzers in use today. An accuracy of 0.02 cm~(-1) over the 50 cm~(-1) range of the test laser and a precision of 0.002 cm~(-1) over a 15 cm~(-1) scan has been demonstrated. High resolution mode hop free CW scanning of a 0.5 cm~(-1) range at a scan rate of 200 Hz with a wavelength precision of 0.002 cm~(-1) has also been demonstrated. This makes the design an attractive alternative to current Distributed feedback (DFB) QCLs for high resolution gas phase measurements due to the added advantage of broad tunability for the detection of multiple gases, and the capability to select multiple gas lines of different intensity to extend the dynamic range.
机译:量子级联激光器(QCL)和带间级联激光器(ICL)是有前途的新型中红外光源,适用于光谱应用。理想的特性包括极高的亮度,宽泛的发射,极高的分辨率,紧凑的尺寸和适度的功耗。对于大多数光谱应用,有必要在较宽的发射波长范围内调谐QCL。用于宽调谐的常规方法是使用外腔(EC),该外腔在激光腔内合并了机械调谐的衍射光栅。在本文中,我们将描述另一种EC-QCL调整方法,该方法利用微型,热调谐,MEMS制成的滤波器,从而实现了非常紧凑,简单,机械稳定的封装,没有活动部件。该系统非常适合当今使用的许多工业光谱分析仪所需的多种波长的离散测量。在测试激光的50 cm〜(-1)范围内的精度为0.02 cm〜(-1),在15 cm〜(-1)的扫描范围内的精度为0.002 cm〜(-1)。还证明了以200 Hz的扫描速率,波长精度为0.002 cm〜(-1)的0.5 cm〜(-1)范围的高分辨率模式无跳CW扫描。这使该设计成为用于高分辨率气相测量的当前分布式反馈(DFB)QCL的有吸引力的替代方案,这归因于其广泛的可扩展性,可检测多种气体,并具有选择不同强度的多条气体管线以扩展检测范围的能力。动态范围。

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