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Observation of laser power amplification in a self-injecting laser wakefield accelerator

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Observation of laser power amplification in a self-injecting laser wakefield accelerator. / Streeter, M. J. V.; Kneip, S.; Bloom, M. S. et al.
In: Physical review letters, Vol. 120, No. 25, 254801, 22.06.2018.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Streeter, MJV, Kneip, S, Bloom, MS, Bendoyro, RA, Chekhlov, O, Dangor, AE, Döpp, A, Hooker, CJ, Holloway, J, Jiang, J, Lopes, NC, Nakamura, H, Norreys, PA, Palmer, CAJ, Rajeev, PP, Schreiber, J, Symes, DR, Wing, M, Mangles, SPD & Najmudin, Z 2018, 'Observation of laser power amplification in a self-injecting laser wakefield accelerator', Physical review letters, vol. 120, no. 25, 254801. https://doi.org/10.1103/PhysRevLett.120.254801

APA

Streeter, M. J. V., Kneip, S., Bloom, M. S., Bendoyro, R. A., Chekhlov, O., Dangor, A. E., Döpp, A., Hooker, C. J., Holloway, J., Jiang, J., Lopes, N. C., Nakamura, H., Norreys, P. A., Palmer, C. A. J., Rajeev, P. P., Schreiber, J., Symes, D. R., Wing, M., Mangles, S. P. D., & Najmudin, Z. (2018). Observation of laser power amplification in a self-injecting laser wakefield accelerator. Physical review letters, 120(25), Article 254801. https://doi.org/10.1103/PhysRevLett.120.254801

Vancouver

Streeter MJV, Kneip S, Bloom MS, Bendoyro RA, Chekhlov O, Dangor AE et al. Observation of laser power amplification in a self-injecting laser wakefield accelerator. Physical review letters. 2018 Jun 22;120(25):254801. doi: 10.1103/PhysRevLett.120.254801

Author

Streeter, M. J. V. ; Kneip, S. ; Bloom, M. S. et al. / Observation of laser power amplification in a self-injecting laser wakefield accelerator. In: Physical review letters. 2018 ; Vol. 120, No. 25.

Bibtex

@article{694763414b2b4d2fb4925e4e1bf9f470,
title = "Observation of laser power amplification in a self-injecting laser wakefield accelerator",
abstract = "We report on the depletion and power amplification of the driving laser pulse in a strongly-driven laser wakefield accelerator. Simultaneous measurement of the transmitted pulse energy and temporal shape indicate an increase in peak power from $187 \pm 11$TW to a maximum of $318 \pm 12$ TW after 13 mm of propagation in plasma density of $0.9 \times 10^{18}$ cm$^{-3}$. The power amplification is correlated with the injection and acceleration of electrons in the non-linear wakefield. This process is modeled by including localized redshifting and subsequent group delay dispersion at the laser pulse front.",
keywords = "physics.plasm-ph, plasma physics, nonlinear optics, laser-plasma interactions, Plasma wakefield acceleration, electron acceleration, photon acceleration, pulse compression",
author = "Streeter, {M. J. V.} and S. Kneip and Bloom, {M. S.} and Bendoyro, {R. A.} and O. Chekhlov and Dangor, {A. E.} and A. D{\"o}pp and Hooker, {C. J.} and J. Holloway and J. Jiang and Lopes, {N. C.} and H. Nakamura and Norreys, {P. A.} and Palmer, {C. A. J.} and Rajeev, {P. P.} and J. Schreiber and Symes, {D. R.} and M. Wing and Mangles, {S. P. D.} and Z. Najmudin",
note = "{\textcopyright} 2018 American Physical Society",
year = "2018",
month = jun,
day = "22",
doi = "10.1103/PhysRevLett.120.254801",
language = "English",
volume = "120",
journal = "Physical review letters",
issn = "1079-7114",
publisher = "American Physical Society",
number = "25",

}

RIS

TY - JOUR

T1 - Observation of laser power amplification in a self-injecting laser wakefield accelerator

AU - Streeter, M. J. V.

AU - Kneip, S.

AU - Bloom, M. S.

AU - Bendoyro, R. A.

AU - Chekhlov, O.

AU - Dangor, A. E.

AU - Döpp, A.

AU - Hooker, C. J.

AU - Holloway, J.

AU - Jiang, J.

AU - Lopes, N. C.

AU - Nakamura, H.

AU - Norreys, P. A.

AU - Palmer, C. A. J.

AU - Rajeev, P. P.

AU - Schreiber, J.

AU - Symes, D. R.

AU - Wing, M.

AU - Mangles, S. P. D.

AU - Najmudin, Z.

N1 - © 2018 American Physical Society

PY - 2018/6/22

Y1 - 2018/6/22

N2 - We report on the depletion and power amplification of the driving laser pulse in a strongly-driven laser wakefield accelerator. Simultaneous measurement of the transmitted pulse energy and temporal shape indicate an increase in peak power from $187 \pm 11$TW to a maximum of $318 \pm 12$ TW after 13 mm of propagation in plasma density of $0.9 \times 10^{18}$ cm$^{-3}$. The power amplification is correlated with the injection and acceleration of electrons in the non-linear wakefield. This process is modeled by including localized redshifting and subsequent group delay dispersion at the laser pulse front.

AB - We report on the depletion and power amplification of the driving laser pulse in a strongly-driven laser wakefield accelerator. Simultaneous measurement of the transmitted pulse energy and temporal shape indicate an increase in peak power from $187 \pm 11$TW to a maximum of $318 \pm 12$ TW after 13 mm of propagation in plasma density of $0.9 \times 10^{18}$ cm$^{-3}$. The power amplification is correlated with the injection and acceleration of electrons in the non-linear wakefield. This process is modeled by including localized redshifting and subsequent group delay dispersion at the laser pulse front.

KW - physics.plasm-ph

KW - plasma physics

KW - nonlinear optics

KW - laser-plasma interactions

KW - Plasma wakefield acceleration

KW - electron acceleration

KW - photon acceleration

KW - pulse compression

U2 - 10.1103/PhysRevLett.120.254801

DO - 10.1103/PhysRevLett.120.254801

M3 - Journal article

VL - 120

JO - Physical review letters

JF - Physical review letters

SN - 1079-7114

IS - 25

M1 - 254801

ER -