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用于受激拉曼散射显微镜的1.06微米增益开关激光二极管产生同步皮秒脉冲。

Generation of synchronized picosecond pulses by a 1.06-µm gain-switched laser diode for stimulated Raman scattering microscopy.

作者信息

Tokunaga Kyoya, Fang Yi-Cheng, Yokoyama Hiroyuki, Ozeki Yasuyuki

出版信息

Opt Express. 2016 May 2;24(9):9617-28. doi: 10.1364/OE.24.009617.

Abstract

We propose that a gain-switched laser diode (GS-LD) can be used as a picosecond laser source for stimulated Raman scattering (SRS) microscopy. We employed a 1.06-µm GS-LD to generate ~13-ps pulses at a repetition rate of 38 MHz and amplified them to >100 mW with Yb-doped fiber amplifiers. The GS-LD was driven by 200-ps electrical pulses, which were triggered through a toggle flip-flop (T-FF) so that the GS-LD pulses were synchronized to Ti:sapphire laser (TSL) pulses at a repetition rate of 76 MHz. We found the timing jitter of GS-LD pulses to be approximately 2.7 ps in a jitter bandwidth of 7 MHz. We also show that the delay of electrical pulses can be less sensitive to the optical power of TSL pulses by controlling the threshold voltage of the T-FF. We demonstrate the SRS imaging of polymer beads and of HeLa cells with GS-LD pulses and TSL pulses, proving that GS-LD is readily applicable to SRS microscopy as a compact and stable pulse source.

摘要

我们提出增益开关激光二极管(GS-LD)可作为受激拉曼散射(SRS)显微镜的皮秒激光源。我们采用一个1.06微米的GS-LD以38兆赫兹的重复频率产生约13皮秒的脉冲,并用掺镱光纤放大器将其放大至超过100毫瓦。GS-LD由200皮秒的电脉冲驱动,这些电脉冲通过一个触发翻转触发器(T-FF)触发,从而使GS-LD脉冲与钛宝石激光器(TSL)脉冲以76兆赫兹的重复频率同步。我们发现在7兆赫兹的抖动带宽内,GS-LD脉冲的定时抖动约为2.7皮秒。我们还表明,通过控制T-FF的阈值电压,电脉冲的延迟对TSL脉冲的光功率可以不太敏感。我们用GS-LD脉冲和TSL脉冲演示了聚合物微珠和HeLa细胞的SRS成像,证明GS-LD作为一种紧凑且稳定的脉冲源很容易应用于SRS显微镜。

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