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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >External-Cavity Mode-Locked Quantum-Dot Laser Diodes for Low Repetition Rate, Sub-Picosecond Pulse Generation
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External-Cavity Mode-Locked Quantum-Dot Laser Diodes for Low Repetition Rate, Sub-Picosecond Pulse Generation

机译:外腔锁模量子点激光二极管,低重复率,亚皮秒级脉冲生成

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This paper presents an investigation of the mode-locking performance of a two-section external-cavity mode-locked InGaAs quantum-dot laser diode, focusing on repetition rate, pulse duration and pulse energy. The lowest repetition rate to-date of any passively mode-locked semiconductor laser diode is demonstrated (310 MHz) and a restriction on the pulse energy (at 0.4 pJ) for the shortest pulse durations is identified. Fundamental mode-locking from 310 MHz to 1.1 GHz was investigated, and harmonic mode-locking was achieved up to a repetition rate of 4.4 GHz. Fourier transform limited subpicosecond pulse generation was realized through implementation of an intra-cavity glass etalon, and pulse durations from 930 fs to 8.3 ps were demonstrated for a repetition rate of 1 GHz. For all investigations, mode-locking with the shortest pulse durations yielded constant pulse energies of ∼0.4 pJ, revealing an independence of the pulse energy on all the mode-locking parameters investigated (cavity configuration, driving conditions, pulse duration, repetition rate, and output power).
机译:本文研究了两节式外腔锁模InGaAs量子点激光二极管的锁模性能,重点研究了重复频率,脉冲持续时间和脉冲能量。迄今为止,证明了任何被动锁模半导体激光二极管的最低重复率(310 MHz),并且确定了在最短脉冲持续时间内对脉冲能量的限制(0.4 pJ)。研究了从310 MHz到1.1 GHz的基本锁模,并实现了高达4.4 GHz的重复频率的谐波锁模。通过实施腔内玻璃标准具实现了傅里叶变换有限的亚皮秒脉冲生成,并证明了1 GHz重复频率下从930 fs到8.3 ps的脉冲持续时间。对于所有研究,最短脉冲持续时间的锁模产生约0.4 pJ的恒定脉冲能量,揭示了脉冲能量在所研究的所有锁模参数上的独立性(腔配置,驱动条件,脉冲持续时间,重复频率和输出功率)。

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