A “Microscope” Stand for Verification of Microwave Radio Interferometers

Capa

Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

The device and principle of operation of the “Microscope” stand for determining the measurement error of reflecting-surface movements are described. The stand is developed on the basis of a BMI-1 instrumental microscope; a glass line measure of the second accuracy class is used as the comparison standard. A theoretical assessment of the measurement error of the reflecting-surface movement using the “Microscope” stand is given. The technique of verification of microwave radio interferometers using the developed stand and the results of determining the error of the microwave radio interferometer according to the presented method are presented.

Sobre autores

E. Botov

Russian Federal Nuclear Center–All-Russia Research Institute of Experimental Physics

Email: ikonnikov-vn@yandex.ru
607188, Sarov, Russia

V. Ikonnikov

Russian Federal Nuclear Center–All-Russia Research Institute of Experimental Physics

Email: ikonnikov-vn@yandex.ru
607188, Sarov, Russia

N. Kornev

Russian Federal Nuclear Center–All-Russia Research Institute of Experimental Physics

Email: ikonnikov-vn@yandex.ru
607188, Sarov, Russia

E. Mitin

Russian Federal Nuclear Center–All-Russia Research Institute of Experimental Physics

Email: ikonnikov-vn@yandex.ru
607188, Sarov, Russia

A. Nazarov

Russian Federal Nuclear Center–All-Russia Research Institute of Experimental Physics

Email: ikonnikov-vn@yandex.ru
607188, Sarov, Russia

A. Sedov

Russian Federal Nuclear Center–All-Russia Research Institute of Experimental Physics

Email: ikonnikov-vn@yandex.ru
607188, Sarov, Russia

D. Tregubenko

Russian Federal Nuclear Center–All-Russia Research Institute of Experimental Physics

Autor responsável pela correspondência
Email: ikonnikov-vn@yandex.ru
607188, Sarov, Russia

Bibliografia

  1. Невозмущающие методы диагностики быстропротекающих процессов / Под ред. А.Л. Михайлова. Саров: ФГУП “РФЯЦ–ВНИИЭФ”, 2015.
  2. Mays R.O., Tringe J.W., Souers P.C., Lauderbach L.M., Baluyot E.V., Converse M.C., Kane R.J. // AIP Conf. Proc. 2018. V. 1979. Iss. 1. P. 160016. https://doi.org/10.1063/1.5045015
  3. Zhai Z.-H., Sun C.-L., Liu Q., Guo L.-W., Liu Y.-S., Zhang X., Wang D.-T., Meng K., Li J., Du L.-H., Liu S.-X., Zhong S.-C., Zhu L.-G. // Appl. Phys. Lett. 2020. V. 116. P. 161102. https://doi.org/10.1063/1.5142415
  4. Длиномеры горизонтальные моделей Mini-Horizontal TELS, Horizon, Horizon Granite, Horizon Premium, THV, Labconcept/Labconcept Premium, Twinner, Alesta/Alesta Premium. Описание типа средства измерений. Приложение к свидетельству об утверждении типа средства измерений № 30710.
  5. Приборы универсальные для измерений длины Precimar ULM 300/600/1000/1500. Описание типа средства измерений. Приложение к свидетельству об утверждении типа средства измерений № 31586.
  6. ГОСТ 12069-90 “Меры длины штриховые брусковые. Технические условия”.

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML
2.

Baixar (680KB)
3.

Baixar (142KB)
4.

Baixar (78KB)
5.

Baixar (86KB)
6.

Baixar (280KB)

Declaração de direitos autorais © Е.В. Ботов, В.Н. Иконников, Н.С. Корнев, Е.С. Митин, А.В. Назаров, А.А. Седов, Д.А. Трегубенко, 2023