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用于780纳米宽带被动锁模的对称和非对称双量子阱扩展腔二极管激光器的比较

Comparison of symmetric and asymmetric double quantum well extended-cavity diode lasers for broadband passive mode-locking at 780  nm.

作者信息

Christopher Heike, Kovalchuk Evgeny V, Wenzel Hans, Bugge Frank, Weyers Markus, Wicht Andreas, Peters Achim, Tränkle Günther

出版信息

Appl Opt. 2017 Jul 1;56(19):5566-5572. doi: 10.1364/AO.56.005566.

Abstract

We present a compact, mode-locked diode laser system designed to emit a frequency comb in the wavelength range around 780 nm. We compare the mode-locking performance of symmetric and asymmetric double quantum well ridge-waveguide diode laser chips in an extended-cavity diode laser configuration. By reverse biasing a short section of the diode laser chip, passive mode-locking at 3.4 GHz is achieved. Employing an asymmetric double quantum well allows for generation of a mode-locked optical spectrum spanning more than 15 nm (full width at -20  dB) while the symmetric double quantum well device only provides a bandwidth of ∼2.7  nm (full width at -20  dB). Analysis of the RF noise characteristics of the pulse repetition rate shows an RF linewidth of about 7 kHz (full width at half-maximum) and of at most 530 Hz (full width at half-maximum) for the asymmetric and symmetric double quantum well devices, respectively. Investigation of the frequency noise power spectral density at the pulse repetition rate shows a white noise floor of approximately 2100  Hz/Hz and of at most 170  Hz/Hz for the diode laser employing the asymmetric and symmetric double quantum well structures, respectively. The pulse width is less than 10 ps for both devices.

摘要

我们展示了一种紧凑的锁模二极管激光系统,其设计目的是在780 nm左右的波长范围内发射频率梳。我们比较了扩展腔二极管激光配置中对称和非对称双量子阱脊波导二极管激光芯片的锁模性能。通过对二极管激光芯片的一小段进行反向偏置,实现了3.4 GHz的被动锁模。采用非对称双量子阱可产生跨度超过15 nm(-20 dB处的全宽)的锁模光谱,而对称双量子阱器件仅提供约2.7 nm(-20 dB处的全宽)的带宽。对脉冲重复率的射频噪声特性分析表明,非对称和对称双量子阱器件的射频线宽分别约为7 kHz(半高全宽)和至多530 Hz(半高全宽)。对脉冲重复率处的频率噪声功率谱密度的研究表明,采用非对称和对称双量子阱结构的二极管激光的白噪声本底分别约为2100 Hz/Hz和至多170 Hz/Hz。两种器件的脉冲宽度均小于10 ps。

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