Abstract
The cooling algorithm for saddle points presented earlier (1994) is generalized to obtain static classical solutions of the SU(2)-Higgs field theory in the limit of infinite Higgs self-coupling. The sphaleron energy obtained via this algorithm is E{sub sph}=5.08(7)M{sub W}/{alpha}{sub W}. ((orig.)).
Citation Formats
Garcia Perez, M, and Baal, P van.
The sphaleron energy for SU(2)-Higgs from cooling.
Netherlands: N. p.,
1995.
Web.
doi:10.1016/0920-5632(95)00315-Z.
Garcia Perez, M, & Baal, P van.
The sphaleron energy for SU(2)-Higgs from cooling.
Netherlands.
https://doi.org/10.1016/0920-5632(95)00315-Z
Garcia Perez, M, and Baal, P van.
1995.
"The sphaleron energy for SU(2)-Higgs from cooling."
Netherlands.
https://doi.org/10.1016/0920-5632(95)00315-Z.
@misc{etde_101136,
title = {The sphaleron energy for SU(2)-Higgs from cooling}
author = {Garcia Perez, M, and Baal, P van}
abstractNote = {The cooling algorithm for saddle points presented earlier (1994) is generalized to obtain static classical solutions of the SU(2)-Higgs field theory in the limit of infinite Higgs self-coupling. The sphaleron energy obtained via this algorithm is E{sub sph}=5.08(7)M{sub W}/{alpha}{sub W}. ((orig.)).}
doi = {10.1016/0920-5632(95)00315-Z}
journal = []
volume = {42}
journal type = {AC}
place = {Netherlands}
year = {1995}
month = {Apr}
}
title = {The sphaleron energy for SU(2)-Higgs from cooling}
author = {Garcia Perez, M, and Baal, P van}
abstractNote = {The cooling algorithm for saddle points presented earlier (1994) is generalized to obtain static classical solutions of the SU(2)-Higgs field theory in the limit of infinite Higgs self-coupling. The sphaleron energy obtained via this algorithm is E{sub sph}=5.08(7)M{sub W}/{alpha}{sub W}. ((orig.)).}
doi = {10.1016/0920-5632(95)00315-Z}
journal = []
volume = {42}
journal type = {AC}
place = {Netherlands}
year = {1995}
month = {Apr}
}