Standard

Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma. / Andreev, A.; Lan, Chen; Lecz, Zs.

Progress in Photon Science. Springer Nature, 2021. стр. 21-28 (Springer Series in Chemical Physics; Том 125).

Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийглава/разделРецензирование

Harvard

Andreev, A, Lan, C & Lecz, Z 2021, Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma. в Progress in Photon Science. Springer Series in Chemical Physics, Том. 125, Springer Nature, стр. 21-28. https://doi.org/10.1007/978-3-030-77646-6_2

APA

Andreev, A., Lan, C., & Lecz, Z. (2021). Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma. в Progress in Photon Science (стр. 21-28). (Springer Series in Chemical Physics; Том 125). Springer Nature. https://doi.org/10.1007/978-3-030-77646-6_2

Vancouver

Andreev A, Lan C, Lecz Z. Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma. в Progress in Photon Science. Springer Nature. 2021. стр. 21-28. (Springer Series in Chemical Physics). https://doi.org/10.1007/978-3-030-77646-6_2

Author

Andreev, A. ; Lan, Chen ; Lecz, Zs. / Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma. Progress in Photon Science. Springer Nature, 2021. стр. 21-28 (Springer Series in Chemical Physics).

BibTeX

@inbook{e75ccf53c44943c2bcf02aacf928b64b,
title = "Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma",
abstract = "It is known that in the small quantum parameter regime the Breit-Wheeler electron-positron pair creation cross section is extremely sensitive on the photon energy and on the background field. We present the dependence of positron yield on laser intensity in shaped laser under/over dense (gas/foil) plasma interactions with the help of analytical modeling and PIC simulations. This allows for establishing in situ laser intensity diagnostic by measuring the positron yield in experiments where multi PW lasers are used.",
author = "A. Andreev and Chen Lan and Zs Lecz",
note = "Andreev A., Lan C., Lecz Z. (2021) Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma. In: Yamanouchi K., Manshina A.A., Makarov V.A. (eds) Progress in Photon Science. Springer Series in Chemical Physics, vol 125. Springer, Cham. https://doi.org/10.1007/978-3-030-77646-6_2",
year = "2021",
doi = "10.1007/978-3-030-77646-6_2",
language = "English",
isbn = "978-3-030-77645-9",
series = "Springer Series in Chemical Physics",
publisher = "Springer Nature",
pages = "21--28",
booktitle = "Progress in Photon Science",
address = "Germany",

}

RIS

TY - CHAP

T1 - Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma

AU - Andreev, A.

AU - Lan, Chen

AU - Lecz, Zs

N1 - Andreev A., Lan C., Lecz Z. (2021) Diagnostic of Peak Laser Intensity by Electron and Positron Production from Laser Plasma. In: Yamanouchi K., Manshina A.A., Makarov V.A. (eds) Progress in Photon Science. Springer Series in Chemical Physics, vol 125. Springer, Cham. https://doi.org/10.1007/978-3-030-77646-6_2

PY - 2021

Y1 - 2021

N2 - It is known that in the small quantum parameter regime the Breit-Wheeler electron-positron pair creation cross section is extremely sensitive on the photon energy and on the background field. We present the dependence of positron yield on laser intensity in shaped laser under/over dense (gas/foil) plasma interactions with the help of analytical modeling and PIC simulations. This allows for establishing in situ laser intensity diagnostic by measuring the positron yield in experiments where multi PW lasers are used.

AB - It is known that in the small quantum parameter regime the Breit-Wheeler electron-positron pair creation cross section is extremely sensitive on the photon energy and on the background field. We present the dependence of positron yield on laser intensity in shaped laser under/over dense (gas/foil) plasma interactions with the help of analytical modeling and PIC simulations. This allows for establishing in situ laser intensity diagnostic by measuring the positron yield in experiments where multi PW lasers are used.

UR - http://www.scopus.com/inward/record.url?scp=85114353646&partnerID=8YFLogxK

UR - https://www.mendeley.com/catalogue/3e5f6c96-aa62-3c24-96a6-aa21c41595d7/

U2 - 10.1007/978-3-030-77646-6_2

DO - 10.1007/978-3-030-77646-6_2

M3 - Chapter

AN - SCOPUS:85114353646

SN - 978-3-030-77645-9

T3 - Springer Series in Chemical Physics

SP - 21

EP - 28

BT - Progress in Photon Science

PB - Springer Nature

ER -

ID: 86379584