Analysis of microwave frequency combs generated by semiconductor lasers under hybrid optical injections

Cheng-Ting Lin, Yi-Hua Wu, Y. Juan
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Abstract

Microwave frequency combs utilizing hybrid optical injections schemes by varying the operational parameters, injection strength, repetition frequency, and detuning frequency are demonstrated and characterized. The dynamical hybrid optical injections are realized by both optical pulse injection and optical cw injection to the slave laser simultaneously under the condition of zero detuning frequency between two injecting source lasers. For pure pulse injection case, the amplitude variation of ±27.3 dB in a 30 GHz range is obtained. By further applying the injection strength of the cw injection to the pulses injected semiconductor laser, the amplitude variation of ±3.3 dB in a 30 GHz range in microwave frequency combs are observed when operating the cw injection system in a stable locking state. In order to examine the microwave frequency comb precisely, each operational parameters of the hybrid optical injections schemes are analyzed. The amplitude variation of microwave frequency combs is also strongly influenced by operating the cw injection system in different states. Comparing to the cw injection system operated in period-one states, the amplitude variation is reduced when operated in the stable locking states. Moreover, the bandwidth broadening in microwave frequency comb is expected when the cw injection system operating in a stable locking state. In this paper, strongly improve the amplitude variation of the microwave frequency combs generated utilizing hybrid injections scheme compared to single injection case are obtained and compared.
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混合光注入下半导体激光器产生的微波频率梳的分析
通过改变工作参数、注入强度、重复频率和失谐频率,对利用混合光注入方案的微波频率梳进行了演示和表征。在两个注入源激光器失谐频率为零的条件下,通过同时向从端激光器注入光脉冲和光连续波来实现动态混合光注入。在纯脉冲注入情况下,在30ghz范围内的振幅变化为±27.3 dB。通过进一步将连续波注入的注入强度应用于注入的脉冲半导体激光器,在微波频率梳中,当连续波注入系统处于稳定锁定状态时,在30 GHz范围内的幅度变化为±3.3 dB。为了精确地检测微波频率梳,分析了混合光注入方案的各工作参数。连续波注入系统在不同状态下的运行对微波频率梳的幅值变化也有很大的影响。与周期一状态下的连续波喷射系统相比,稳定锁定状态下的振幅变化减小。此外,当连续波注入系统工作在稳定的锁定状态时,微波频率梳的带宽有望展宽。本文得到了混合注入方案与单一注入方案相比,产生的微波频率梳的幅值变化明显改善的结果。
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