Investigation of the Operation of the Flight Detector of High-Speed Charged Microparticles for a Time-of-Flight Mass Spectrometer

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Abstract

The paper considers various designs of detectors for the passage of charged microparticles, which can be installed on mass spectrometers in order to record the moment of passage of a microparticle and initiate the measurement process. The largest range of recorded masses and velocities was shown by the detector design, made on the basis of a dielectric base (PLA plastic) using a 3D printer and a nichrome filament.

About the authors

K. E. Voronov

Korolev Samara National Research University (Samara University)

Email: talex85@mail.ru
443086, Samara, Russia

I. V. Piyakov

Korolev Samara National Research University (Samara University)

Email: talex85@mail.ru
443086, Samara, Russia

M. P. Kalaev

Korolev Samara National Research University (Samara University)

Email: talex85@mail.ru
443086, Samara, Russia

A. M. Telegin

Korolev Samara National Research University (Samara University)

Author for correspondence.
Email: talex85@mail.ru
443086, Samara, Russia

References

  1. Auer S., Grün E., Kempf S., Srama R., Srowig A., Sternovsky Z., Tschernjawski V. // Review of scientific instruments 2008. V. 79. Art. № 084501. https://doi.org/10.1063/1.2960566
  2. Xie J., Sternovsky Z., Auerd S., Drake K., Grün E., Horanyi M., Le H., Srama R. // Planetary and Space Science. 2013. V. 89. P. 63. https://doi.org/10.1016/j.pss.2013.01.004
  3. Пияков А.В., Телегин А.М. // ПТЭ. 2022. № 4. С. 106. https://doi.org/10.31857/S0032816222040243
  4. Auer S. // Rev. Sci. Instrum. 1975. V. 46. № 2. P. 127. https://doi.org/10.1063/1.1134155
  5. Auer S., Grün E., Srama R., Kemp S., Auera R. // Planetary and Space Science. 2022. V. 50. P. 773. https://doi.org/10.1016/S0032-0633(02)00019-3
  6. Li Y., Kempf S., Simolka J., Strack H., Grün E., Srama R. // Advances in Space Research. 2017. V. 59. P. 1636. https://doi.org/10.1016/j.asr.2016.12.037
  7. Пияков И.В., Калаев М.П., Сухачев К.И., Воронов К.Е., Телегин А.М. // ПТЭ. 2020. № 6. С. 83. https://doi.org/10.31857/S0032816220060154
  8. Воронов К.Е., Телегин А.М., Рязанов Д.М. // Прикладная физика. 2021. № 4. С. 73. https://doi.org/10.51368/1996-0948-2021-4-73-80
  9. Фельд Я.Н. // Докл. АН СССР. 1953. Т. 93. № 3. С. 447.
  10. Герштейн Г.М. Моделирование полей методом электростатической индукции.М.: Наука, 1970.
  11. Телегин А.М. // Инженерная физика. 2021. № 9. С. 27.
  12. Иновенков А.Н., Константинов О.В., Пирогов В.И. // ЖТФ. 1993. Т. 63. № 9. С. 1.
  13. Поклонский Н.А., Вырко С.А., Кочерженко А.А. // ЖТФ. 2004. Т. 74. № 11. С. 75.
  14. Семкин Н.Д., Пияков А.В., Воронов К.Е., Богоявленский Н.Л., Горюнов Д.В. // ПТЭ. 2007. № 2. С. 140.

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Copyright (c) 2023 К.Е. Воронов, И.В. Пияков, М.П. Калаев, А.М. Телегин