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0.8 mJ quasi-continuously pumped sub-nanosecond highly doped Nd:YAG oscillator-amplifier laser system in bounce geometry

✍ Scribed by M. Jelínek; V. Kubeček; M. Čech; P. Hiršl


Publisher
John Wiley and Sons
Year
2011
Tongue
English
Weight
101 KB
Volume
8
Category
Article
ISSN
1612-2011

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✦ Synopsis


A quasi-continuously pumped picosecond oscillator-amplifier laser system based on two identical 2.4% Nd:YAG slabs in a single bounce geometry was developed and investigated. The oscillator was passively mode locked by the multiple quantum well saturable absorber inserted into the resonator in transmission mode. Output train containing 7 pulses with total energy of 900 μJ was generated directly from the oscillator. Single pulse with energy of 75 μJ, duration of 113 ps and Gaussian spatial profile was cavity dumped from the resonator and amplified by the single pass amplifier to the energy of 830 μJ. Comparison with our previously reported data obtained with similar system based on Nd:GdVO4 shows advantage of using highly doped Nd:YAG for generation of sub-millijoule pulses in one hundred picoseconds range, which might be interesting in many applications. M2 M4 MQW M3 M1 AM1 LD1 A M 2 L D 2 M5 P1 PC L1 L2 λ/2

Schematic of the laser oscillator and amplifier


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15 ps quasi-continuously pumped passivel
✍ Jelínek, M. (author);Kubeček, V. (author) 📂 Article 📅 2011 🏛 John Wiley and Sons 🌐 English ⚖ 111 KB

A semiconductor saturable absorber mirror modelocking of a quasi-continuously pumped laser based on 2.4 at.% Nd:YAG slab in a bounce geometry was demonstrated and investigated. Output mode-locked and Q-switched train containing 15 pulses with total energy of 500 μJ was generated directly from the os