optical diagnostics;
rotational temperature;
N-2(+) first negative system;
air and nitrogen plasmas;
D O I:
10.1016/S0022-4073(00)00083-2
中图分类号:
O43 [光学];
学科分类号:
070207 ;
0803 ;
摘要:
Recent Fourier-transform spectrometry measurements of a wide array of rovibrational lines of the first negative system of N-2(+) were used to develop a quantitative line-by-line radiation code that can be used for accurate rotational temperature determinations in nitrogen and air plasmas. The model is applied to the interpretation of spectral measurements obtained in a nonequilibrium nitrogen/argon plasma produced by a 50 kW radio-frequency inductively coupled plasma torch. Two rotational temperature determination techniques are presented that consist either in performing a global fit of the spectral region 3700-3920 Angstrom or in comparing the intensity of a single group of isolated lines at 3759.5 Angstrom to the intensity of the (0-0) band head. Both techniques yield a rotational temperature of 4850 K with an accuracy of better than 2%. (C) 2001 Elsevier Science Ltd. All rights reserved.
机构:
UNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALYUNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALY
CRAMAROSSA, F
FERRARO, G
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机构:
UNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALYUNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALY
机构:
UNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALYUNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALY
CRAMAROSSA, F
FERRARO, G
论文数: 0引用数: 0
h-index: 0
机构:
UNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALYUNIV STUDI BARI, IST CHIM GEN & INORG, CONSIGLIO NAZL RICERCHE, BARI, ITALY