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ISSN: 1023-5086

ru/

ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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УДК: 535.32

Characteristics of a glow-discharge krypton lamp in the vacuum ultraviolet

For Russian citation (Opticheskii Zhurnal):

Будович В.Л., Герасимов Г.Н., Крылов Б.Е., Полотнюк Е.Б. Характеристики криптоновой лампы тлеющего разряда в вакуумной ультрафиолетовой области // Оптический журнал. 2013. Т. 80. № 11. С. 62–67.

 

Budovich V. L., Polotnyuk E. B., Gerasimov G. N., Krylov B. E. Characteristics of a glow-discharge krypton lamp in the vacuum ultraviolet [in Russian] // Opticheskii Zhurnal. 2013. V. 80. № 11. P. 62–67.

For citation (Journal of Optical Technology):

V. L. Budovich, E. B. Polotnyuk, G. N. Gerasimov, and B. E. Krylov, "Characteristics of a glow-discharge krypton lamp in the vacuum ultraviolet," Journal of Optical Technology. 80(11), 691-694 (2013). https://doi.org/10.1364/JOT.80.000691

Abstract:

The spectral and energy characteristics of a compact krypton glow-discharge lamp used as the ionization source in analytical devices have been investigated. The emission spectrum of the lamp in the 115–200 nm VUV region has been studied, the flux of VUV emission has been measured, and data concerning the intensity ratio of the 116.49 and 123.58 nm resonance lines of krypton emitted by the lamp have been obtained.

Keywords:

small-sized glow discharge lamp, vacuum ultraviolet radiation, vacuum spectrometer, flow ionization chamber, spectrum and intensity of radiation

OCIS codes: 120.3930, 260.7210, 300.6210, 300.6540

References:

1. http://www.gmp.ch/htmlarea/pdf/perkinelmer/GMP_DTS_PID.pdf.
2. V. L. Budovich, D. V. Budovich, and E. B. Polotnyuk, “New vacuum ultraviolet lamps for gas analysis,” Zh. Tekh. Fiz. 76, No. 4, 140 (2006) [Tech. Phys. 51, 529 (2006)].
3. A. Morozov, B. Krylov, G. Gerasimov, A. Arnesen, and R. Hallin, “VUV emission spectra from binary rare-gas mixtures near the resonance lines of Xe I and Kr I,” J. Phys. D: Appl. Phys. 36, 1126 (2003).
4. G. N. Gerasimov, B. E. Krylov, R. Hallin, A. O. Morozov, A. Arnesen, and F. Haijkenskjold, “Vacuum ultraviolet spectra of heteronuclear dimers of inert gases in a direct-current discharge,” Opt. Spektrosk. 94, 426 (2003) [Opt. Spectrosc. 94, 374 (2006)].
5. V. L. Budovich, B. R. Meshcherov, and E. B. Polotnyuk, “Flow-through ionization chamber for measuring the radiation intensity of VUV sources,” Opt. Zh. 79, No. 6, 92 (2012) [J. Opt. Technol. 79, 509 (2012)].
6. V. L. Budovich, V. P. Il’in, B. R. Meshcherov, and E. B. Polotnyuk, “Measuring the absolute radiation intensity of VUV lamps by means of a flowthrough ionization chamber,” in Collection of Papers of the Tenth International Conference on Applied Optics 2012, St. Petersburg, 2012