3 4 Vs 5 For M 246 Gev And Assuming Respectively M H M A

λ 3 + λ 4 vs λ 5 for M = 246 GeV and assuming respectively m H ± = m A ...
λ 3 + λ 4 vs λ 5 for M = 246 GeV and assuming respectively m H ± = m A ...
λ 3 + λ 4 vs λ 5 for M = 246 GeV and assuming respectively m H ± = m A ...
λ 3 + λ 4 vs λ 5 for M = 246 GeV and assuming respectively m H ± = m A ...
λ 3 + λ 4 vs λ 5 for M = 246 GeV and assuming respectively m H ± = m A ...
λ 3 + λ 4 vs λ 5 for M = 246 GeV and assuming respectively m H ± = m A ...
λ 345 vs ∆m AH assuming m H ± = m A 0 , for m H 0 = 70 GeV. Red lines ...
λ 345 vs ∆m AH assuming m H ± = m A 0 , for m H 0 = 70 GeV. Red lines ...
Running of λ for three different values of m H and m t = 174.3 GeV ...
Running of λ for three different values of m H and m t = 174.3 GeV ...
Dependence on δ and m h 0 at m H + = 131 GeV and α = π 2 in potential A ...
Dependence on δ and m h 0 at m H + = 131 GeV and α = π 2 in potential A ...
Decay time (in seconds) and relative velocity for m H = 450 GeV and 620 ...
Decay time (in seconds) and relative velocity for m H = 450 GeV and 620 ...
Contours of m h = 125 GeV for minimal (red dashed line) and ...
Contours of m h = 125 GeV for minimal (red dashed line) and ...
2: Contours of m h = 126 GeV for α G = 3, v 2 = 0.1f 2 and m t = 173 ...
2: Contours of m h = 126 GeV for α G = 3, v 2 = 0.1f 2 and m t = 173 ...
The same as in figure 3 but for µ = M 1 = 700 GeV and tan β = 30. The ...
The same as in figure 3 but for µ = M 1 = 700 GeV and tan β = 30. The ...
T parameter for m H ± = 650 GeV (top) and m H ± = 1000 GeV (bottom) in ...
T parameter for m H ± = 650 GeV (top) and m H ± = 1000 GeV (bottom) in ...
Left panel: Rγγ as a function of MH for −2 · 10 6 GeV 2 m 2 22 9 · 10 4 ...
Left panel: Rγγ as a function of MH for −2 · 10 6 GeV 2 m 2 22 9 · 10 4 ...
m h is plotted versus m L keeping M R = 500 GeV and A N = 0 . The stop ...
m h is plotted versus m L keeping M R = 500 GeV and A N = 0 . The stop ...
B ( μ → e + γ ) vs | | for M 1 = 100 GeV and | M 2 − M 1 | / M 1 ...
B ( μ → e + γ ) vs | | for M 1 = 100 GeV and | M 2 − M 1 | / M 1 ...
Branching ratio of H AE for m H AE ¼ 250 GeV (top panel) and m H AE ¼ ...
Branching ratio of H AE for m H AE ¼ 250 GeV (top panel) and m H AE ¼ ...
Dependence on δ and m h 0 at m H + = 131 GeV and α = π 2 in potential A ...
Dependence on δ and m h 0 at m H + = 131 GeV and α = π 2 in potential A ...
The same as fig. 5 but for the different point m 1 / 2 = 500 GeV and m ...
The same as fig. 5 but for the different point m 1 / 2 = 500 GeV and m ...
MATHEMATICS If a , b , c are A M , G M and H M respectively of two equal
MATHEMATICS If a , b , c are A M , G M and H M respectively of two equal
Branching ratios of H ± for mass m H ± = 250 GeV (top-panel) and m H ± ...
Branching ratios of H ± for mass m H ± = 250 GeV (top-panel) and m H ± ...
The same as in Fig. 1 but for m 16 = 2.5 TeV and m A = 500 GeV (upper ...
The same as in Fig. 1 but for m 16 = 2.5 TeV and m A = 500 GeV (upper ...
B ( μ → e + γ ) vs | | for M 1 = 100 GeV, z = 10 − 3 and i ) NH ...
B ( μ → e + γ ) vs | | for M 1 = 100 GeV, z = 10 − 3 and i ) NH ...
M h,H,H ± vary with respect to M A for M ˜ t = 500 GeV, A t = −740 GeV ...
M h,H,H ± vary with respect to M A for M ˜ t = 500 GeV, A t = −740 GeV ...
The allowed range of ? 1 and ? 2 for m h = 125 GeV. | Download ...
The allowed range of ? 1 and ? 2 for m h = 125 GeV. | Download ...
Fitted κ(φ):s with m H = 35 GeV, T = 148.83 GeV ≈ T c and m H = 60 GeV ...
Fitted κ(φ):s with m H = 35 GeV, T = 148.83 GeV ≈ T c and m H = 60 GeV ...
Plots of ∆T versus M S 2 with (a) M H = 60 GeV and (b) M H = 70 GeV ...
Plots of ∆T versus M S 2 with (a) M H = 60 GeV and (b) M H = 70 GeV ...
Contours of various fixed values of m h (124 GeV and 126.2 GeV), µ γγ ...
Contours of various fixed values of m h (124 GeV and 126.2 GeV), µ γγ ...
Constraints from DAO on dark atoms with m H = 1 GeV assuming ξ = 0.5 ...
Constraints from DAO on dark atoms with m H = 1 GeV assuming ξ = 0.5 ...
g 4 (m Z ) = 0.01: The left figure shows the dependence of m H 1 and m ...
g 4 (m Z ) = 0.01: The left figure shows the dependence of m H 1 and m ...
As for Fig. 8, with m 3/2 = 250 GeV but tan β = 50 and unchanged values ...
As for Fig. 8, with m 3/2 = 250 GeV but tan β = 50 and unchanged values ...
The parameter space on the |δm| vs. m H plane with v δ = 0.1 GeV and λ ...
The parameter space on the |δm| vs. m H plane with v δ = 0.1 GeV and λ ...
Contours of BR=11% for various v 1 values at the m H = 125 GeV case ...
Contours of BR=11% for various v 1 values at the m H = 125 GeV case ...
The m distribution for m H = 125 GeV used as input to the template fit ...
The m distribution for m H = 125 GeV used as input to the template fit ...
Measurements of the signal strength parameter μ for m H = 126 GeV for ...
Measurements of the signal strength parameter μ for m H = 126 GeV for ...
[ANSWERED] 36 Two blocks A and B of masses 2m and m respectively are ...
[ANSWERED] 36 Two blocks A and B of masses 2m and m respectively are ...
Signal for M T 210 GeV (dashed line) and M T 250 GeV (solid line ...
Signal for M T 210 GeV (dashed line) and M T 250 GeV (solid line ...
Contours of BR=11% for various v 1 values at the m H = 125 GeV case ...
Contours of BR=11% for various v 1 values at the m H = 125 GeV case ...

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