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Compact 19 kW/8 ns pulse Nd:YAG/V:YAG laser source at 1.32 µm

Identifikátory výsledku

  • Kód výsledku v IS VaVaI

    <a href="https://www.isvavai.cz/riv?ss=detail&h=RIV%2F68407700%3A21340%2F25%3A00386330" target="_blank" >RIV/68407700:21340/25:00386330 - isvavai.cz</a>

  • Výsledek na webu

    <a href="https://doi.org/10.1117/12.3056156" target="_blank" >https://doi.org/10.1117/12.3056156</a>

  • DOI - Digital Object Identifier

    <a href="http://dx.doi.org/10.1117/12.3056156" target="_blank" >10.1117/12.3056156</a>

Alternativní jazyky

  • Jazyk výsledku

    angličtina

  • Název v původním jazyce

    Compact 19 kW/8 ns pulse Nd:YAG/V:YAG laser source at 1.32 µm

  • Popis výsledku v původním jazyce

    We present a miniature passively Q-switched diode-pumped laser generating stable nanosecond pulses in the spectral region of 1.32 µm with pulse energy exceeding 0.1 mJ. Main advantages of this radiation is the higher eye safety due to higher absorption in liquid water and lower background radiation intensity thanks to higher absorption in atmospheric water vapour compared to 1.06 µm radiation. Therefore, such a system could serve as a compact laser source for LIDAR applications such as drone tracking in counter-drone defense. Described laser design based on separate Nd:YAG and V:YAG crystals, operating at a wavelength of 1318 nm, was introduced earlier. Currently, we present a more compact laser with a bigger pumping spot size and simple system for resonator adjustment. A Nd:YAG crystal (8 mm long) was used as a gain medium, and a V:YAG crystal ([100]-cut, T0 = 85 % @ 1.3 µm) played the role of a saturable absorber. The laser resonator mirrors were deposited on the Nd:YAG crystal (pumping mirror highly reflecting at 1.3 µm radiation and highly transparent for 808 nm) and on the V:YAG crystal (output coupler with a reflectivity of 85 % at 1.3 µm). For longitudinal Nd:YAG pumping, a fiber-coupled laser diode was used. Two aspheric lenses, f = 8 and 11 mm, were used to focus pumping radiation into the Nd:YAG crystal (the pumping beam spot was ~ 570 µm in diameter). In the range of tested pumping pulse frequencies, the laser generated ~ 8 ns long pulses (FWHM). The maximum output pulse energy achieved was 146 µJ, corresponding to the maximum peak power of 19 kW. The pulse energy reliably reached 120 µJ for pumping frequencies up to 400 Hz. 2025 SPIE. All rights reserved.

  • Název v anglickém jazyce

    Compact 19 kW/8 ns pulse Nd:YAG/V:YAG laser source at 1.32 µm

  • Popis výsledku anglicky

    We present a miniature passively Q-switched diode-pumped laser generating stable nanosecond pulses in the spectral region of 1.32 µm with pulse energy exceeding 0.1 mJ. Main advantages of this radiation is the higher eye safety due to higher absorption in liquid water and lower background radiation intensity thanks to higher absorption in atmospheric water vapour compared to 1.06 µm radiation. Therefore, such a system could serve as a compact laser source for LIDAR applications such as drone tracking in counter-drone defense. Described laser design based on separate Nd:YAG and V:YAG crystals, operating at a wavelength of 1318 nm, was introduced earlier. Currently, we present a more compact laser with a bigger pumping spot size and simple system for resonator adjustment. A Nd:YAG crystal (8 mm long) was used as a gain medium, and a V:YAG crystal ([100]-cut, T0 = 85 % @ 1.3 µm) played the role of a saturable absorber. The laser resonator mirrors were deposited on the Nd:YAG crystal (pumping mirror highly reflecting at 1.3 µm radiation and highly transparent for 808 nm) and on the V:YAG crystal (output coupler with a reflectivity of 85 % at 1.3 µm). For longitudinal Nd:YAG pumping, a fiber-coupled laser diode was used. Two aspheric lenses, f = 8 and 11 mm, were used to focus pumping radiation into the Nd:YAG crystal (the pumping beam spot was ~ 570 µm in diameter). In the range of tested pumping pulse frequencies, the laser generated ~ 8 ns long pulses (FWHM). The maximum output pulse energy achieved was 146 µJ, corresponding to the maximum peak power of 19 kW. The pulse energy reliably reached 120 µJ for pumping frequencies up to 400 Hz. 2025 SPIE. All rights reserved.

Klasifikace

  • Druh

    D - Stať ve sborníku

  • CEP obor

  • OECD FORD obor

    20201 - Electrical and electronic engineering

Návaznosti výsledku

  • Projekt

    <a href="/cs/project/FW01010219" target="_blank" >FW01010219: Multikomponentní monokrystalické materiály pro laserové aplikace</a><br>

  • Návaznosti

    P - Projekt vyzkumu a vyvoje financovany z verejnych zdroju (s odkazem do CEP)

Ostatní

  • Rok uplatnění

    2025

  • Kód důvěrnosti údajů

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

Údaje specifické pro druh výsledku

  • Název statě ve sborníku

    Proc. SPIE 13532, High-power, High-energy Lasers, and Ultrafast Optical Technologies II

  • ISBN

    978-1-5106-8860-5

  • ISSN

    0277-786X

  • e-ISSN

    1996-756X

  • Počet stran výsledku

    5

  • Strana od-do

  • Název nakladatele

    SPIE

  • Místo vydání

    Bellingham (stát Washington)

  • Místo konání akce

    Praha

  • Datum konání akce

    7. 4. 2025

  • Typ akce podle státní příslušnosti

    WRD - Celosvětová akce

  • Kód UT WoS článku

    001578479500014