Published 2020 | Version v1
Book

Optimization of atomic cells characteristics of the CPT standard

  • 1. Natsional'nyj Issledovatel'skij Yadernyj Univ. «MIFI», Moscow (Russian Federation)
  • 2. Fizicheskij Inst. im. P.N. Lebedeva RAN (FIAN), Moscow (Russian Federation)

Description

To increase the stability of atomic clock based on the resonance of coherent population trapping (CPT) it is necessary to suppress the temperature dependence of its frequency and increase the ratio of the resonance contrast to its width. The temperature coefficients of the buffer gas were determined. We optimized the ratio of the CPT resonance contrast to its width by determining the required total pressure of buffer gases of small-size cells

Abstract (Russian)

Для повышения стабильности атомных часов на резонансе когерентного пленения населенностей (КПН) требуется подавлять температурную зависимость его частоты и увеличивать отношение контраста резонанса к его ширине. Определены коэффициенты зависимости частоты КПН резонанса от температуры буферных газов. Для оптимизации отношения контраста к ширине найдено требуемое суммарное давление буферных газов (Ar + N2) для малогабаритных ячеек
Part of:
VI International conference «Laser, plasma research and technologies – LaPlaz-2020». Collection of scientific papers. Part 2

Additional details

Additional titles

Original title (Russian)
Исследование и оптимизация характеристик атомных ячеек KPN-стандарта

Publishing Information

Publisher
NIYaU MIFI
Imprint Place
Moscow (Russian Federation)
ISBN
978-5-7262-2655-2
Imprint Title
VI International conference #Left-Pointing Double Angle Quotation Mark#Laser, plasma research and technologies #En Dash# LaPlaz-2020#Right-Pointing Double Angle Quotation Mark#. Collection of scientific papers. Part 2
Imprint Pagination
370 p.
Journal Page Range
p. 29-30

Conference

Title
6. International conference ''Laser, plasma research and technologies - LaPlaz-2020''
Original Conference Title
VI Mezhdunarodnaya konferentsiya «Lazernye, plazmennye issledovaniya i tekhnologii – LaPlaz-2020»
Dates
11-14 Feb 2020
Place
Moscow (Russian Federation)

Optional Information

Notes
2 refs., 1 fig. Imprint:VI Mezhdunarodnaya konferentsiya #Left-Pointing Double Angle Quotation Mark#Lazernye, plazmennye issledovaniya i tekhnologii #En Dash# LaPlaz-2020#Right-Pointing Double Angle Quotation Mark#. Sbornik nauchnykh trudov. Chast' 2