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Amplitude Analysis of the B^{0}→K^{*0}μ^{+}μ^{-} Decay.

Authors :
Aaij R
Abdelmotteleb ASW
Abellan Beteta C
Abudinén F
Ackernley T
Adeva B
Adinolfi M
Adlarson P
Agapopoulou C
Aidala CA
Ajaltouni Z
Akar S
Akiba K
Albicocco P
Albrecht J
Alessio F
Alexander M
Alfonso Albero A
Aliouche Z
Alvarez Cartelle P
Amalric R
Amato S
Amey JL
Amhis Y
An L
Anderlini L
Andersson M
Andreianov A
Andreola P
Andreotti M
Andreou D
Anelli A
Ao D
Archilli F
Argenton M
Arguedas Cuendis S
Artamonov A
Artuso M
Aslanides E
Atzeni M
Audurier B
Bacher D
Bachiller Perea I
Bachmann S
Bachmayer M
Back JJ
Bailly-Reyre A
Baladron Rodriguez P
Balagura V
Baldini W
Baptista de Souza Leite J
Barbetti M
Barbosa IR
Barlow RJ
Barsuk S
Barter W
Bartolini M
Baryshnikov F
Basels JM
Bassi G
Batsukh B
Battig A
Bay A
Beck A
Becker M
Bedeschi F
Bediaga IB
Beiter A
Belin S
Bellee V
Belous K
Belov I
Belyaev I
Benane G
Bencivenni G
Ben-Haim E
Berezhnoy A
Bernet R
Bernet Andres S
Bernstein HC
Bertella C
Bertolin A
Betancourt C
Betti F
Bex J
Bezshyiko I
Bhom J
Bieker MS
Biesuz NV
Billoir P
Biolchini A
Birch M
Bishop FCR
Bitadze A
Bizzeti A
Blago MP
Blake T
Blanc F
Blank JE
Blusk S
Bobulska D
Bocharnikov V
Boelhauve JA
Boente Garcia O
Boettcher T
Bohare A
Boldyrev A
Bolognani CS
Bolzonella R
Bondar N
Borgato F
Borghi S
Borsato M
Borsuk JT
Bouchiba SA
Bowcock TJV
Boyer A
Bozzi C
Bradley MJ
Braun S
Brea Rodriguez A
Breer N
Brodzicka J
Brossa Gonzalo A
Brown J
Brundu D
Buonaura A
Buonincontri L
Burke AT
Burr C
Bursche A
Butkevich A
Butter JS
Buytaert J
Byczynski W
Cadeddu S
Cai H
Calabrese R
Calefice L
Cali S
Calvi M
Calvo Gomez M
Cambon Bouzas J
Campana P
Campora Perez DH
Campoverde Quezada AF
Capelli S
Capriotti L
Caravaca-Mora R
Carbone A
Carcedo Salgado L
Cardinale R
Cardini A
Carniti P
Carus L
Casais Vidal A
Caspary R
Casse G
Castro Godinez J
Cattaneo M
Cavallero G
Cavallini V
Celani S
Cerasoli J
Cervenkov D
Cesare S
Chadwick AJ
Chahrour I
Charles M
Charpentier P
Chavez Barajas CA
Chefdeville M
Chen C
Chen S
Chernov A
Chernyshenko S
Chobanova V
Cholak S
Chrzaszcz M
Chubykin A
Chulikov V
Ciambrone P
Cicala MF
Cid Vidal X
Ciezarek G
Cifra P
Clarke PEL
Clemencic M
Cliff HV
Closier J
Cobbledick JL
Cocha Toapaxi C
Coco V
Cogan J
Cogneras E
Cojocariu L
Collins P
Colombo T
Comerma-Montells A
Congedo L
Contu A
Cooke N
Corredoira I
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Corti G
Cottee Meldrum JJ
Couturier B
Craik DC
Cruz Torres M
Currie R
Da Silva CL
Dadabaev S
Dai L
Dai X
Dall'Occo E
Dalseno J
D'Ambrosio C
Daniel J
Danilina A
d'Argent P
Davidson A
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De Aguiar Francisco O
De Angelis C
de Boer J
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Source :
Physical review letters [Phys Rev Lett] 2024 Mar 29; Vol. 132 (13), pp. 131801.
Publication Year :
2024

Abstract

An amplitude analysis of the B^{0}→K^{*0}μ^{+}μ^{-} decay is presented using a dataset corresponding to an integrated luminosity of 4.7  fb^{-1} of pp collision data collected with the LHCb experiment. For the first time, the coefficients associated to short-distance physics effects, sensitive to processes beyond the standard model, are extracted directly from the data through a q^{2}-unbinned amplitude analysis, where q^{2} is the μ^{+}μ^{-} invariant mass squared. Long-distance contributions, which originate from nonfactorizable QCD processes, are systematically investigated, and the most accurate assessment to date of their impact on the physical observables is obtained. The pattern of measured corrections to the short-distance couplings is found to be consistent with previous analyses of b- to s-quark transitions, with the largest discrepancy from the standard model predictions found to be at the level of 1.8 standard deviations. The global significance of the observed differences in the decay is 1.4 standard deviations.

Details

Language :
English
ISSN :
1079-7114
Volume :
132
Issue :
13
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
38613276
Full Text :
https://doi.org/10.1103/PhysRevLett.132.131801