TY - JOUR

T1 - The end point of the first-order phase transition of the SU(2) gauge-Higgs model on a 4-dimensional isotropic lattice

AU - Aoki, Y.

AU - Csikor, F.

AU - Fodor, Z.

AU - Ukawa, A.

PY - 1999/1/1

Y1 - 1999/1/1

N2 - We study the first-order finite-temperature electroweak phase transition of the SU(2) gauge-Higgs model defined on a four-dimensional isotropic lattice with the temporal extension (Formula presented). A finite-size scaling study of Lee-Yang zeros yields the value of the Higgs self-coupling of the end point at (Formula presented). An independent analysis of the Binder cumulant gives a consistent value for the end point. Combined with our zero-temperature measurement of Higgs and W boson masses, this leads to (Formula presented) GeV for the critical Higgs boson mass beyond which the electroweak transition turns into a crossover.

AB - We study the first-order finite-temperature electroweak phase transition of the SU(2) gauge-Higgs model defined on a four-dimensional isotropic lattice with the temporal extension (Formula presented). A finite-size scaling study of Lee-Yang zeros yields the value of the Higgs self-coupling of the end point at (Formula presented). An independent analysis of the Binder cumulant gives a consistent value for the end point. Combined with our zero-temperature measurement of Higgs and W boson masses, this leads to (Formula presented) GeV for the critical Higgs boson mass beyond which the electroweak transition turns into a crossover.

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U2 - 10.1103/PhysRevD.60.013001

DO - 10.1103/PhysRevD.60.013001

M3 - Article

AN - SCOPUS:17044373134

VL - 60

JO - Physical Review D - Particles, Fields, Gravitation and Cosmology

JF - Physical Review D - Particles, Fields, Gravitation and Cosmology

SN - 1550-7998

IS - 1

ER -