分光计
激光器
等离子体
光学
飞秒
物理
光谱分辨率
等离子体诊断
发射率
弯曲分子几何
材料科学
原子物理学
谱线
天文
量子力学
复合材料
作者
B. K. Young,A. L. Osterheld,D. Price,R. Shepherd,Richard E. Stewart,A. Ya. Faenov,A. I. Magunov,С. А. Пикуз,I. Yu. Skobelev,F. Flora,S. Bollanti,P. Di Lazzaro,T. Letardi,Antonio Grilli,L. Palladino,A. Reale,A. Scafati,L. Reale
摘要
Ultrashort-pulse, laser-produced plasmas have become very interesting laboratory sources to study spectroscopically due to their very high densities and temperatures, and the high laser-induced electromagnetic fields present. Typically, these plasmas are of very small volume and very low emissivity. Thus, studying these near point source plasmas requires advanced experimental techniques. We present a new spectrometer design called the focusing spectrometer with spatial resolution (FSSR-2D) based on a spherically bent crystal which provides simultaneous high spectral (λ/Δλ≈104) and spatial resolution (≈10 μm) as well as high luminosity (high collection efficiency). We described in detail the FSSR-2D case in which a small, near point source plasma is investigated. An estimate for the spectral and spatial resolution for the spectrometer is outlined based on geometric considerations. Using the FSSR-2D instrument, experimental data measured from both a 100 fs and a nanosecond pulse laser-produced plasma are presented.
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