Kieu N, Gordillo-Vázquez F J, Passas M, Sánchez J, Pérez-Invernón F J, Luque A, Montanyá J, Christian H
Instituto de Astrofísica de Andalucía (IAA-CSIC) Granada Spain.
Deutsches Zentrum für Luft- und Raumfahrt, Institut für Physik der Atmosphäre Oberpfaffenhofen Germany.
Geophys Res Lett. 2020 Aug 16;47(15):e2020GL088755. doi: 10.1029/2020GL088755. Epub 2020 Aug 7.
Submicrosecond (0.476 μs per frame with an exposure time of 160 ns) high-resolution (0.38 nm) time-resolved spectra of laboratory-produced lightning-like electrical discharges have been recorded for the first time within the visible spectral range (645-665 nm). The spectra were recorded with the GrAnada LIghtning Ultrafast Spectrograph (GALIUS), a high-speed imaging spectrograph recently developed for lightning research in the IAA-CSIC. Unprecedented spectral time dynamics are explored for meter long laboratory electrical discharges produced with a 2.0 MV Marx generator. The maximum electron density and gas temperature measured in a timescale of ≤0.50 μs (160 ns) were, respectively, ≃10 cm and ≃32,000 K. Overpressure in the lightning-like plasma channel, black-body dynamics, and self-absorption in spectral lines were investigated.
首次在可见光谱范围(645 - 665纳米)内记录了实验室产生的类闪电放电的亚微秒级(每帧0.476微秒,曝光时间160纳秒)高分辨率(0.38纳米)时间分辨光谱。这些光谱是用格拉纳达闪电超快光谱仪(GALIUS)记录的,这是一台最近为西班牙国家研究委员会航空航天研究所的闪电研究而开发的高速成像光谱仪。对于用2.0兆伏马克思发生器产生的米长实验室放电,探索了前所未有的光谱时间动态。在≤0.50微秒(160纳秒)的时间尺度内测得的最大电子密度和气体温度分别约为10厘米和32000开尔文。研究了类闪电等离子体通道中的超压、黑体动力学和谱线中的自吸收。