regenerative amplifier
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Laser Physics ◽  
2021 ◽  
Vol 32 (1) ◽  
pp. 015002
Author(s):  
Mohammad Sadegh Kazempourfard ◽  
Hamid Nadgaran ◽  
Seyed Mahdi Mousavi

Abstract In this paper, the effects of pump pulse fluence on the output energy and amplified spontaneous emission (ASE) of a femtosecond regenerative amplifier are investigated. One can easily enhance the output energy of laser amplifiers by increasing their pump fluence. This in turn can increase the ASE and reduce the performance of amplifiers in terms of output beam quality, beam stability, etc. This effect would eventually lead to what is called ‘temporal intensity contrast deterioration’. In this work, it is shown that an optimum state of the pump pulse fluence can indeed optimize the amount of the output energy from a regenerative amplifier without much reducing the performance of the amplifier due to the higher ASE. Temporal gain characteristics were employed to achieve this optimum value for a better design, performance, and maintenance of femtosecond laser amplifiers. The results of the current study can be effectively used in designing a wide range of regenerative amplifiers for femtosecond pulses.


2021 ◽  
pp. 127874
Author(s):  
Jiangtao Guo ◽  
Jiangfeng Wang ◽  
Xiaoqin Wang ◽  
xiaochao Wang ◽  
Wei Fan ◽  
...  

Crystals ◽  
2021 ◽  
Vol 11 (10) ◽  
pp. 1242
Author(s):  
Keyang Liu ◽  
Hongyang Li ◽  
Xinliang Wang ◽  
Yanqi Liu ◽  
Liwei Song ◽  
...  

We report on the long-term correction of a timing fluctuation between the femtosecond regenerative amplifier and the reference oscillator for the seed 100 PW laser system in the Station of Extreme Light (SEL). The timing fluctuation was characterized by a noncollinear balanced optical cross-correlator that maps the time difference to the sum frequency intensity of the amplifier and oscillator laser pulses. A feedback loop was employed to correct the timing jitter by adjusting the time delay line in the amplifier beam path. The timing fluctuation was reduced to 1.26 fs root-mean-square from hundreds of fs over 10 hours. Benefitting from excellent performance and long-term stability, this timing jitter correction scheme, as a component of optical synchronization in the 100 PW laser facility, will be integrated into SEL.


Photonics ◽  
2021 ◽  
Vol 8 (8) ◽  
pp. 316
Author(s):  
Vanessa Ling Jen Phung ◽  
Keekon Kang ◽  
Seongjin Jeon ◽  
Jinju Kim ◽  
Kyungmin Roh ◽  
...  

We developed a compact Ti:sapphire laser amplifier system in our laboratory, generating intense laser pulses with a peak power of >1 TW (terawatt), a pulse duration of 34 fs (femtosecond), a central wavelength of 800 nm, and a repetition rate of 10 Hz. The laser amplifier system consists of a mode-locked Ti:sapphire oscillator, a regenerative amplifier, and a single-side-pumped 4-pass amplifier. The chirped-pulse amplification (CPA)-based laser amplifier was found to provide an energy of 49.6 mJ after compression by gratings in air, where the pumping fluence of 1.88 J/cm2 was used. The amplified spontaneous emission (ASE) level was measured to be lower than 10−7, and ps-prepulses were in 10−4 or lower level. The developed laser amplifier system was used for the generation of intense THz (terahertz) waves by focusing the original (800 nm) and second harmonic (400 nm) laser pulses in air. The THz pulse energy was shown to be saturated in the high laser energy regime, and this phenomenon was confirmed by fully electromagnetic, relativistic, and self-consistent particle-in-cell (PIC) simulations.


2021 ◽  
Author(s):  
Umit Demirbas ◽  
Martin Kellert ◽  
Jelto Thesinga ◽  
Yi Hua ◽  
Simon Reuter ◽  
...  

2021 ◽  
Author(s):  
Renchong Lv ◽  
Hao Teng ◽  
Jiajun Song ◽  
Renzhu Kang ◽  
Jiangfeng Zhu ◽  
...  

2021 ◽  
pp. 127268
Author(s):  
Wentao Zhu ◽  
Huijun He ◽  
Jun Yu ◽  
Qingdian Lin ◽  
Xiangyang Guo ◽  
...  

Author(s):  
Hussein Taleb ◽  
Pierre Pichon ◽  
Frederic Druon ◽  
Francois Balembois ◽  
Patrick Georges

2021 ◽  
Author(s):  
weizhe wang ◽  
Han Wu ◽  
Chen Liu ◽  
Biao Sun ◽  
Houkun Liang

Laser Physics ◽  
2021 ◽  
Vol 31 (6) ◽  
pp. 065001
Author(s):  
Byunghak Lee ◽  
Bosu Jeong ◽  
Jun Wan Kim ◽  
Elena G Sall ◽  
Chur Kim ◽  
...  

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