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Optimization of Stabilization Modes of Optical Frequency Standards Based on the Saturated Absorption Resonance. / Kovalenko, D. V.; Basalaev, M. Yu; Yudin, V. I.

In: Optics and Spectroscopy (English translation of Optika i Spektroskopiya), Vol. 124, No. 5, 01.05.2018, p. 632-636.

Research output: Contribution to journalArticlepeer-review

Harvard

Kovalenko, DV, Basalaev, MY & Yudin, VI 2018, 'Optimization of Stabilization Modes of Optical Frequency Standards Based on the Saturated Absorption Resonance', Optics and Spectroscopy (English translation of Optika i Spektroskopiya), vol. 124, no. 5, pp. 632-636. https://doi.org/10.1134/S0030400X18050119

APA

Vancouver

Kovalenko DV, Basalaev MY, Yudin VI. Optimization of Stabilization Modes of Optical Frequency Standards Based on the Saturated Absorption Resonance. Optics and Spectroscopy (English translation of Optika i Spektroskopiya). 2018 May 1;124(5):632-636. doi: 10.1134/S0030400X18050119

Author

Kovalenko, D. V. ; Basalaev, M. Yu ; Yudin, V. I. / Optimization of Stabilization Modes of Optical Frequency Standards Based on the Saturated Absorption Resonance. In: Optics and Spectroscopy (English translation of Optika i Spektroskopiya). 2018 ; Vol. 124, No. 5. pp. 632-636.

BibTeX

@article{40cc06a97cf54f6b966488ff6a2ec0e2,
title = "Optimization of Stabilization Modes of Optical Frequency Standards Based on the Saturated Absorption Resonance",
abstract = "A theoretical study is carried out within the framework of density matrix formalism of the error signal slope for frequency standards based on the resonance of saturated absorption excited in the field of two counterwaves. Two schemes of error-signal formation are considered: in the first case, the frequency of only the test field is modulated, and, in the second case, the frequency modulation of both waves is carried out. On the basis of the calculations, the optimal parameters of harmonic modulation are determined, at which the slope has the maximum value.",
author = "Kovalenko, {D. V.} and Basalaev, {M. Yu} and Yudin, {V. I.}",
year = "2018",
month = may,
day = "1",
doi = "10.1134/S0030400X18050119",
language = "English",
volume = "124",
pages = "632--636",
journal = "Optics and Spectroscopy (English translation of Optika i Spektroskopiya)",
issn = "0030-400X",
publisher = "Maik Nauka Publishing / Springer SBM",
number = "5",

}

RIS

TY - JOUR

T1 - Optimization of Stabilization Modes of Optical Frequency Standards Based on the Saturated Absorption Resonance

AU - Kovalenko, D. V.

AU - Basalaev, M. Yu

AU - Yudin, V. I.

PY - 2018/5/1

Y1 - 2018/5/1

N2 - A theoretical study is carried out within the framework of density matrix formalism of the error signal slope for frequency standards based on the resonance of saturated absorption excited in the field of two counterwaves. Two schemes of error-signal formation are considered: in the first case, the frequency of only the test field is modulated, and, in the second case, the frequency modulation of both waves is carried out. On the basis of the calculations, the optimal parameters of harmonic modulation are determined, at which the slope has the maximum value.

AB - A theoretical study is carried out within the framework of density matrix formalism of the error signal slope for frequency standards based on the resonance of saturated absorption excited in the field of two counterwaves. Two schemes of error-signal formation are considered: in the first case, the frequency of only the test field is modulated, and, in the second case, the frequency modulation of both waves is carried out. On the basis of the calculations, the optimal parameters of harmonic modulation are determined, at which the slope has the maximum value.

UR - http://www.scopus.com/inward/record.url?scp=85049182577&partnerID=8YFLogxK

U2 - 10.1134/S0030400X18050119

DO - 10.1134/S0030400X18050119

M3 - Article

AN - SCOPUS:85049182577

VL - 124

SP - 632

EP - 636

JO - Optics and Spectroscopy (English translation of Optika i Spektroskopiya)

JF - Optics and Spectroscopy (English translation of Optika i Spektroskopiya)

SN - 0030-400X

IS - 5

ER -

ID: 14278725