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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Mechanism of wavelength tuning and frequency modulation in three-electrode DFB lasers
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Mechanism of wavelength tuning and frequency modulation in three-electrode DFB lasers

机译:三电极DFB激光器的波长调谐和频率调制机制

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摘要

The static and dynamic characteristics of three-electrode DFB lasers are investigated. In wavelength tuning, the side sections determine the effective Bragg wavelength, while the center section acts as the active phase shifter. A continuous tuning with a wide range of 5 nm is demonstrated utilizing a requisite thermal contribution to the extension of the effective Bragg wavelength shift. The direction of the frequency shift in carrier-induced frequency modulation (FM) can be described by a single parameter-the phase shift in the center section. It is also pointed out that a wide FM bandwidth exceeding 10 GHz can be obtained for red-shifted cases, despite the modulation bandwidth of the carrier density being limited by the carrier lifetime. The interpretation presented in this paper makes the operating mechanism clearly understandable for practical use.
机译:研究了三电极DFB激光器的静态和动态特性。在波长调谐中,侧面部分确定有效布拉格波长,而中间部分充当有源移相器。利用有效的布拉格波长偏移扩展所需的热效应,证明了在5 nm宽范围内进行连续调谐。载波感应频率调制(FM)中的频移方向可以通过单个参数-中心部分的相移来描述。还要指出的是,尽管载波密度的调制带宽受到载波寿命的限制,但对于红移情况仍可获得超过10 GHz的宽FM带宽。本文提供的解释使操作机制在实际使用中清晰易懂。

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