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Pulse Noise Effect on Carrier-Envelope Phase Stabilization. / Kuptsov, G. V.; Kirpichnikov, A. V.; Petrov, V. V. et al.

In: Atmospheric and Oceanic Optics, Vol. 39, No. 4, 09.09.2026, p. 546-550.

Research output: Contribution to journal › Article › peer-review

Harvard

Kuptsov, GV, Kirpichnikov, AV, Petrov, VV, Petrov, VA, Kuptsova, AO & Trunov, VI 2026, 'Pulse Noise Effect on Carrier-Envelope Phase Stabilization', Atmospheric and Oceanic Optics, vol. 39, no. 4, pp. 546-550. https://doi.org/10.1134/s1024856026700387

APA

Kuptsov, G. V., Kirpichnikov, A. V., Petrov, V. V., Petrov, V. A., Kuptsova, A. O., & Trunov, V. I. (2026). Pulse Noise Effect on Carrier-Envelope Phase Stabilization. Atmospheric and Oceanic Optics, 39(4), 546-550. https://doi.org/10.1134/s1024856026700387

Vancouver

Kuptsov GV, Kirpichnikov AV, Petrov VV, Petrov VA, Kuptsova AO, Trunov VI. Pulse Noise Effect on Carrier-Envelope Phase Stabilization. Atmospheric and Oceanic Optics. 2026 Sept 9;39(4):546-550. doi: 10.1134/s1024856026700387

Author

Kuptsov, G. V. ; Kirpichnikov, A. V. ; Petrov, V. V. et al. / Pulse Noise Effect on Carrier-Envelope Phase Stabilization. In: Atmospheric and Oceanic Optics. 2026 ; Vol. 39, No. 4. pp. 546-550.

BibTeX

@article{1cda67fed94a4631a1889bf457db1312,
title = "Pulse Noise Effect on Carrier-Envelope Phase Stabilization",
abstract = "Sources of short-wavelength radiation generated by the interaction of high-intensity radiation with matter are in demand for experimental research in physics, chemistry, and biology. Reproducible parameters of the generated short-wavelength pulses require the use of femtosecond pulses with stabilized carrier-envelope phase (CEP). The work is devoted to the study of the effect of pulse envelope noise on the error in determining the CEP. For the CEP stabilization system based on f-2f interferometer with spectral interference pattern resolution, it is shown that an increase in noise of an original pulse increases the error in determining CEP from supercontinuum radiation, which attains about 100 mrad at an envelope noise of 1%. An increase in the radiation peak power increases the influence of noise on the error in determining CEP due to supercontinuum generation. The results can be used to develop and optimize systems for measuring the carrier-envelope phase of femtosecond pulses with repetition rates in kilohertz range.",
keywords = "суперконтинуум, стабилизация CEP, f-2f интерферометрия, фемтосекундный импульс, supercontinuum, CEP stabilization, f-2f interferometry, femtosecond pulse",
author = "Kuptsov, {G. V.} and Kirpichnikov, {A. V.} and Petrov, {V. V.} and Petrov, {V. A.} and Kuptsova, {A. O.} and Trunov, {V. I.}",
note = "Kuptsov, G.V., Kirpichnikov, A.V., Petrov, V.V. et al. Pulse Noise Effect on Carrier-Envelope Phase Stabilization. Atmos Ocean Opt 39, 546–550 (2026). https://doi.org/10.1134/S1024856026700387. – EDN PBLFFS. The study was supported by the Ministry of Science and Higher Education of the Russian Federation (project no. FWGU-2026-0002).",
year = "2026",
month = sep,
day = "9",
doi = "10.1134/s1024856026700387",
language = "English",
volume = "39",
pages = "546--550",
journal = "Atmospheric and Oceanic Optics",
issn = "1024-8560",
publisher = "Springer",
number = "4",

}

RIS

TY - JOUR

T1 - Pulse Noise Effect on Carrier-Envelope Phase Stabilization

AU - Kuptsov, G. V.

AU - Kirpichnikov, A. V.

AU - Petrov, V. V.

AU - Petrov, V. A.

AU - Kuptsova, A. O.

AU - Trunov, V. I.

N1 - Kuptsov, G.V., Kirpichnikov, A.V., Petrov, V.V. et al. Pulse Noise Effect on Carrier-Envelope Phase Stabilization. Atmos Ocean Opt 39, 546–550 (2026). https://doi.org/10.1134/S1024856026700387. – EDN PBLFFS. The study was supported by the Ministry of Science and Higher Education of the Russian Federation (project no. FWGU-2026-0002).

PY - 2026/9/9

Y1 - 2026/9/9

N2 - Sources of short-wavelength radiation generated by the interaction of high-intensity radiation with matter are in demand for experimental research in physics, chemistry, and biology. Reproducible parameters of the generated short-wavelength pulses require the use of femtosecond pulses with stabilized carrier-envelope phase (CEP). The work is devoted to the study of the effect of pulse envelope noise on the error in determining the CEP. For the CEP stabilization system based on f-2f interferometer with spectral interference pattern resolution, it is shown that an increase in noise of an original pulse increases the error in determining CEP from supercontinuum radiation, which attains about 100 mrad at an envelope noise of 1%. An increase in the radiation peak power increases the influence of noise on the error in determining CEP due to supercontinuum generation. The results can be used to develop and optimize systems for measuring the carrier-envelope phase of femtosecond pulses with repetition rates in kilohertz range.

AB - Sources of short-wavelength radiation generated by the interaction of high-intensity radiation with matter are in demand for experimental research in physics, chemistry, and biology. Reproducible parameters of the generated short-wavelength pulses require the use of femtosecond pulses with stabilized carrier-envelope phase (CEP). The work is devoted to the study of the effect of pulse envelope noise on the error in determining the CEP. For the CEP stabilization system based on f-2f interferometer with spectral interference pattern resolution, it is shown that an increase in noise of an original pulse increases the error in determining CEP from supercontinuum radiation, which attains about 100 mrad at an envelope noise of 1%. An increase in the radiation peak power increases the influence of noise on the error in determining CEP due to supercontinuum generation. The results can be used to develop and optimize systems for measuring the carrier-envelope phase of femtosecond pulses with repetition rates in kilohertz range.

KW - суперконтинуум

KW - стабилизация CEP

KW - f-2f интерферометрия

KW - фемтосекундный импульс

KW - supercontinuum

KW - CEP stabilization

KW - f-2f interferometry

KW - femtosecond pulse

UR - https://www.mendeley.com/catalogue/f82715c9-304b-3e85-97dd-15229252ab04/

UR - https://www.scopus.com/pages/publications/105050528161

UR - https://www.elibrary.ru/item.asp?id=92015379

U2 - 10.1134/s1024856026700387

DO - 10.1134/s1024856026700387

M3 - Article

VL - 39

SP - 546

EP - 550

JO - Atmospheric and Oceanic Optics

JF - Atmospheric and Oceanic Optics

SN - 1024-8560

IS - 4

ER -

ID: 83404823