Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak

Publication Date:
2018-01-27
Publisher:
American Physical Society (APS)
Print ISSN:
0031-9007
Electronic ISSN:
1079-7114
Topics:
Physics
Keywords:
Plasma and Beam Physics
Published by:
_version_ 1836398765664108544
autor T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
beschreibung Author(s): T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh We investigate spatial structures of turbulence and turbulent transport modulated by the geodesic acoustic mode (GAM), from which the excitation mechanism of the GAM is discussed. The GAM is found to be predominantly excited through a localized Reynolds stress force, rather than the dynamic shearing... [Phys. Rev. Lett. 120, 045002] Published Fri Jan 26, 2018
citation_standardnr 6147776
datenlieferant ipn_articles
feed_id 52535
feed_publisher American Physical Society (APS)
feed_publisher_url http://www.aps.org/
insertion_date 2018-01-27
journaleissn 1079-7114
journalissn 0031-9007
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher American Physical Society (APS)
quelle Physical Review Letters
relation http://link.aps.org/doi/10.1103/PhysRevLett.120.045002
schlagwort Plasma and Beam Physics
search_space articles
shingle_author_1 T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
shingle_author_2 T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
shingle_author_3 T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
shingle_author_4 T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
shingle_catch_all_1 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
Plasma and Beam Physics
Author(s): T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh We investigate spatial structures of turbulence and turbulent transport modulated by the geodesic acoustic mode (GAM), from which the excitation mechanism of the GAM is discussed. The GAM is found to be predominantly excited through a localized Reynolds stress force, rather than the dynamic shearing... [Phys. Rev. Lett. 120, 045002] Published Fri Jan 26, 2018
T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
American Physical Society (APS)
0031-9007
00319007
1079-7114
10797114
shingle_catch_all_2 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
Plasma and Beam Physics
Author(s): T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh We investigate spatial structures of turbulence and turbulent transport modulated by the geodesic acoustic mode (GAM), from which the excitation mechanism of the GAM is discussed. The GAM is found to be predominantly excited through a localized Reynolds stress force, rather than the dynamic shearing... [Phys. Rev. Lett. 120, 045002] Published Fri Jan 26, 2018
T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
American Physical Society (APS)
0031-9007
00319007
1079-7114
10797114
shingle_catch_all_3 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
Plasma and Beam Physics
Author(s): T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh We investigate spatial structures of turbulence and turbulent transport modulated by the geodesic acoustic mode (GAM), from which the excitation mechanism of the GAM is discussed. The GAM is found to be predominantly excited through a localized Reynolds stress force, rather than the dynamic shearing... [Phys. Rev. Lett. 120, 045002] Published Fri Jan 26, 2018
T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
American Physical Society (APS)
0031-9007
00319007
1079-7114
10797114
shingle_catch_all_4 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
Plasma and Beam Physics
Author(s): T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh We investigate spatial structures of turbulence and turbulent transport modulated by the geodesic acoustic mode (GAM), from which the excitation mechanism of the GAM is discussed. The GAM is found to be predominantly excited through a localized Reynolds stress force, rather than the dynamic shearing... [Phys. Rev. Lett. 120, 045002] Published Fri Jan 26, 2018
T. Kobayashi, M. Sasaki, T. Ido, K. Kamiya, Y. Miura, Y. Nagashima, K. Ida, S. Inagaki, A. Fujisawa, S.-I. Itoh, and K. Itoh
American Physical Society (APS)
0031-9007
00319007
1079-7114
10797114
shingle_title_1 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
shingle_title_2 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
shingle_title_3 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
shingle_title_4 Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
timestamp 2025-06-30T23:32:17.216Z
titel Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
titel_suche Quantification of Turbulent Driving Forces for the Geodesic Acoustic Mode in the JFT-2M Tokamak
topic U
uid ipn_articles_6147776