Standard

Pump depletion and Stokes beam clean up at Raman conversion in graded-index fibers. / Kuznetsov, Alexey G.; Kablukov, Sergey I.; Podivilov, Evgeny V. и др.

Advanced Solid State Lasers, in Proceedings Laser Congress 2020 (ASSL, LAC) Part of Laser Congress. The Optical Society, 2020. JTh6A.12 (Optics InfoBase Conference Papers).

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Harvard

Kuznetsov, AG, Kablukov, SI, Podivilov, EV & Babin, SA 2020, Pump depletion and Stokes beam clean up at Raman conversion in graded-index fibers. в Advanced Solid State Lasers, in Proceedings Laser Congress 2020 (ASSL, LAC) Part of Laser Congress., JTh6A.12, Optics InfoBase Conference Papers, The Optical Society, Advanced Solid State Lasers, ASSL 2020 - Part of Laser Congress, LAC 2020, Washington, Соединенные Штаты Америки, 13.10.2020.

APA

Kuznetsov, A. G., Kablukov, S. I., Podivilov, E. V., & Babin, S. A. (2020). Pump depletion and Stokes beam clean up at Raman conversion in graded-index fibers. в Advanced Solid State Lasers, in Proceedings Laser Congress 2020 (ASSL, LAC) Part of Laser Congress [JTh6A.12] (Optics InfoBase Conference Papers). The Optical Society.

Vancouver

Kuznetsov AG, Kablukov SI, Podivilov EV, Babin SA. Pump depletion and Stokes beam clean up at Raman conversion in graded-index fibers. в Advanced Solid State Lasers, in Proceedings Laser Congress 2020 (ASSL, LAC) Part of Laser Congress. The Optical Society. 2020. JTh6A.12. (Optics InfoBase Conference Papers).

Author

Kuznetsov, Alexey G. ; Kablukov, Sergey I. ; Podivilov, Evgeny V. и др. / Pump depletion and Stokes beam clean up at Raman conversion in graded-index fibers. Advanced Solid State Lasers, in Proceedings Laser Congress 2020 (ASSL, LAC) Part of Laser Congress. The Optical Society, 2020. (Optics InfoBase Conference Papers).

BibTeX

@inproceedings{b366412a97e54fb19b47dd154116c3fd,
title = "Pump depletion and Stokes beam clean up at Raman conversion in graded-index fibers",
abstract = "Multimode 940-nm diode radiation is shown to be converted in graded-index fibers into high-quality (M2≤2) 976-nm Raman beam due to parabolic pump beam, its homogeneous depletion above threshold, mode-selective feedback by FBG and nonlinear effects.",
author = "Kuznetsov, {Alexey G.} and Kablukov, {Sergey I.} and Podivilov, {Evgeny V.} and Babin, {Sergey A.}",
note = "Publisher Copyright: {\textcopyright} 2020 The Author(s) Copyright: Copyright 2021 Elsevier B.V., All rights reserved.; Advanced Solid State Lasers, ASSL 2020 - Part of Laser Congress, LAC 2020 ; Conference date: 13-10-2020 Through 16-10-2020",
year = "2020",
month = oct,
day = "13",
language = "English",
series = "Optics InfoBase Conference Papers",
publisher = "The Optical Society",
booktitle = "Advanced Solid State Lasers, in Proceedings Laser Congress 2020 (ASSL, LAC) Part of Laser Congress",
address = "United States",

}

RIS

TY - GEN

T1 - Pump depletion and Stokes beam clean up at Raman conversion in graded-index fibers

AU - Kuznetsov, Alexey G.

AU - Kablukov, Sergey I.

AU - Podivilov, Evgeny V.

AU - Babin, Sergey A.

N1 - Publisher Copyright: © 2020 The Author(s) Copyright: Copyright 2021 Elsevier B.V., All rights reserved.

PY - 2020/10/13

Y1 - 2020/10/13

N2 - Multimode 940-nm diode radiation is shown to be converted in graded-index fibers into high-quality (M2≤2) 976-nm Raman beam due to parabolic pump beam, its homogeneous depletion above threshold, mode-selective feedback by FBG and nonlinear effects.

AB - Multimode 940-nm diode radiation is shown to be converted in graded-index fibers into high-quality (M2≤2) 976-nm Raman beam due to parabolic pump beam, its homogeneous depletion above threshold, mode-selective feedback by FBG and nonlinear effects.

UR - http://www.scopus.com/inward/record.url?scp=85102571129&partnerID=8YFLogxK

M3 - Conference contribution

AN - SCOPUS:85102571129

T3 - Optics InfoBase Conference Papers

BT - Advanced Solid State Lasers, in Proceedings Laser Congress 2020 (ASSL, LAC) Part of Laser Congress

PB - The Optical Society

T2 - Advanced Solid State Lasers, ASSL 2020 - Part of Laser Congress, LAC 2020

Y2 - 13 October 2020 through 16 October 2020

ER -

ID: 28089512