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用于引力波探测器研究的波长为2微米的可调谐窄线宽激光器。

Tunable narrow-linewidth laser at 2 μm wavelength for gravitational wave detector research.

作者信息

Kapasi D P, Eichholz J, McRae T, Ward R L, Slagmolen B J J, Legge S, Hardman K S, Altin P A, McClelland D E

出版信息

Opt Express. 2020 Feb 3;28(3):3280-3288. doi: 10.1364/OE.383685.

Abstract

We present and characterize a narrow-linewidth external-cavity diode laser at 2 μm, and show that it represents a low-cost, high-performance alternative to fiber lasers for research into 2 μm photonic technologies for next-generation gravitational-wave detectors. A linewidth of 20 kHz for a 10 ms integration time was measured without any active stabilization, with frequency noise of ∼ 15 Hz/Hz between 3 kHz and 100 kHz. This performance is suitable for the generation of quantum squeezed light, and we measure intensity noise comparable to that of master oscillators used in current gravitational wave interferometers. The laser wavelength is tunable over a 120 nm range, and both the frequency and intensity can be modulated at up to 10 MHz by modulating the diode current. These features also make it suitable for other emerging applications in the 2 μm wavelength region including gas sensing, optical communications and LIDAR.

摘要

我们展示并表征了一款2μm窄线宽外腔二极管激光器,结果表明,在研究用于下一代引力波探测器的2μm光子技术方面,它是光纤激光器的一种低成本、高性能替代品。在没有任何主动稳频的情况下,测得10ms积分时间的线宽为20kHz,在3kHz至100kHz之间的频率噪声约为15Hz/Hz。这种性能适用于产生量子压缩光,而且我们测得的强度噪声与当前引力波干涉仪中使用的主振荡器相当。该激光波长在120nm范围内可调,通过调制二极管电流,频率和强度均可实现高达10MHz的调制。这些特性也使其适用于2μm波长区域的其他新兴应用,包括气体传感、光通信和激光雷达。

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