激光器
材料科学
功率(物理)
光电子学
光学
环境科学
物理
量子力学
作者
Zbyněk Hubka,Issa Tamer,Leily Kiani,Jason Owens,Andrew J. Church,František Batysta,T.M. Galvin,Drew Willard,Andrew Yandow,Alex Chemali,Justin Galbraith,D. Alessi,Colin Harthcock,B.C. Hickman,Candis Jackson,James Nissen,Sean Tardif,Hoàng Tùng Nguyễn,Hansel Neurath,Emily Sistrunk,Robert E. Plummer,Brendan Reagan,Thomas Spinka
摘要
We present experimental results that show how diode-pumped Tm:YLF can be used to develop the next generation of lasers with high peak and high average power. We demonstrate the production of broad bandwidth, λ≈ 1.9 μm wavelength, high energy pulses with up to 1.6 J output energy and subsequent compression to sub-300 fs duration. This was achieved using a single 8-pass amplifier to boost stretched approximately 50 μJ pulses to the Joule-level. Furthermore, we show the average power capability of this material in a helium gas-cooled amplifier head, achieving a heat removal rate almost ten times higher than the state-of-the-art, surpassing 20 W/cm2. These demonstrations illustrate the capabilities of directly diode-pumped Tm:YLF to support TW to PW-class lasers at kW average power.
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