A Fourier transform (FT) spectrum of praseodymium (Pr) extending from UV to IR was investigated. Hyperfine (hf) structures of unclassified lines with sufficiently high signal to noise ratio (SNR) were analyzed...A Fourier transform (FT) spectrum of praseodymium (Pr) extending from UV to IR was investigated. Hyperfine (hf) structures of unclassified lines with sufficiently high signal to noise ratio (SNR) were analyzed and some new levels were found. We present these new levels in this work. Some of the new levels have energies almost equal to the energies of already known or other new levels, distinguished either by different values of angular momentum J or by their parity.展开更多
文摘A Fourier transform (FT) spectrum of praseodymium (Pr) extending from UV to IR was investigated. Hyperfine (hf) structures of unclassified lines with sufficiently high signal to noise ratio (SNR) were analyzed and some new levels were found. We present these new levels in this work. Some of the new levels have energies almost equal to the energies of already known or other new levels, distinguished either by different values of angular momentum J or by their parity.