m H = ± 0.24GeV
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- Everett Hancock
- 5 years ago
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2
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4 m H = ± 0.24GeV
5 Y B n B s =(8.59 ± 0.11) n B = n b n b( b) : n b s :
6
7
8
9 W = g 2 2/4 (s) B ( W T ) 4 = (b) B T 4 e E sph/t E sph :
10 v(t ) v v C T T C v C T C
11 V e (T ) T>T C T = T C T =0 T C v C v v C
12 v =0 v =0
13 v =0 v =0
14 v =0 v =0 n B = n L b n L b + n R b n R b =0 =0 =0
15 v =0 v =0 n B = n L b n L b + n R b n R b =0
16 n B =0 v =0 v w v =0 v w :
17 n B =0 v =0 v w v =0 v C T C > 1
18
19 m H > 73 GeV
20 m H > 73 GeV
21
22
23 d i, i = e, n, p
24
25
26
27 HV V Hff HHH H, HHH
28 HV V Hff HHH
29
30 V 0 = µ 2 HH H + H (H H) 2 +µ HS H HS + HS 2 H HS 2 +µ 3 SS + m2 S 2 S2 + µ S 3 S3 + S 4 S4 H(x) = G + (x) 1 (v + 2 h(x)+ig0 (x)), S(x) =v S + h S (x)
31 V 0 = µ 2 HH H + H (H H) 2 +µ HS H HS + HS 2 H HS 2 +µ 3 SS + m2 S 2 S2 + µ S 3 S3 + S 4 S4 (h, h S ) (H 1,H 2 )
32 (b) B <H H (b) B v C T C > g 2 4 E(T C ) [ (log correction)] sph(t C ) E :
33 V = g H 1 VV g SM hv V = cos F = g H 1 ff g SM hv V = cos V = F κ F ATLAS and CMS LHC Run ATLAS+CMS ATLAS 1 CMS % CL 95% CL Best fit SM expected κ V
34 V = g H 1 VV g SM hv V = cos F = g H 1 ff g SM hv V V = F v C /T C =1 κ F = cos ATLAS and CMS LHC Run 1 ATLAS+CMS ATLAS v C T C > sph (T C ) CMS % CL 95% CL Best fit SM expected κ V
35 V = g H 1 VV g SM hv V = cos F = g H 1 ff g SM hv V V = F v C /T C =1 κ F ATLAS and CMS LHC Run 1 ATLAS+CMS ATLAS = cos v C T C > sph (T C ) CMS % CL 95% CL Best fit SM expected κ V
36 V = g H 1 VV g SM hv V = cos F = g H 1 ff g SM hv V V = F = cos v C /T C =1 v C T C > sph (T C ) v C = T C =1.85 sph(t C )=1.18 v C > 1 T C
37 rsm, tree H 1 H 1 H 1 H 1 =6[ H vc 3 + µ HS 2 s c2 + HS 2 s c (vs + v Sc )+ µ 3 + Sv S s 3 V = F ] v C /T C =1 v C T C > sph (T C ) = H 1 H 1 H 1 rsm H 1 H 1 H 1 SM H 1 H 1 H 1 SM H1 H 1 H 1
38
39 S BAU + j i
40 S BAU + j i 1, 2
41 n B = N g (s) B 2 v w v 2 w +2RD q 0 dz n L (z )e Rz /v w N g : n L : (s) B : v w : R : D q : n L n L
42 L = 1 2 i (c L v 2 P L + c R v 1 P R ) j +h.c. c L,R : Im[c L c R ] v 1,2 : i v 2 (y) v 1 (x) i
43 d WW f d H± W ± f γ ψ ± ψ ± ± ψ j ψ i H ± j i W ± f f f L = 1 2 i (c L v 2 P L + c R v 1 P R ) j +h.c. + p c + L + 2 P L + c + R + 1 P R j c + L(R) c + L(R) = c L(R) c L(R)
44 c L = c R =0.42, m H ± = 400 GeV BAU L R = 225 d exp e < e cm Y B /YB obs =1 Y B /YB obs =0.1 d e = e cm
45
46 BAU H S BAU H L3h S + (g S + i 5 g P ) + g S = cos H g P = sin H
47 d WW f d H± W ± f γ d H f,d HZ f ψ ± ψ ± ψ j ψ i H ± W ± f f f d sum f = d WW f + d H± W ± f + d H f + d HZ f d sum e =0
48 d WW f d H± W ± f γ d H f,d HZ f ψ ± ψ ± ψ j ψ i H ± W ± f f f d sum e =0 µ
49
50 0 d sum e d e =0 = d WW e + d H± W ± e + d H e + d HZ e m i = 300 GeV m j = 277 GeV H µ H 1! 2
51 d sum e = d WW e + d H± W ± e + d H e + d HZ e 0 d e = e cm H µ =1.0 d e = e cm µ =
52 0 d n = e cm d p = e cm H 45 µ =1.0 µ =1.0 µ =0.9 µ =
53
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