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Study of CP violation in B0→ DK⋆(892)0 decays with D → Kπ(ππ), ππ(ππ), and KK final states

A bstract A measurement of CP -violating observables associated with the interference of B 0 → D 0 K ⋆ (892) 0 and B 0 → D ¯ 0 K ⋆ 892 0 decay amplitudes is performed in the D 0 → K ∓ π ± ( π + π − ), D 0 → π + π − ( π + π − ), and D 0 → K + K − final states using data collected by the LHCb experime...

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Published in:The journal of high energy physics 2024-05, Vol.2024 (5), p.25, Article 25
Main Authors: Albicocco, P., Alfonso Albero, A., Amey, J. L., Amhis, Y., Andersson, M., Bachmayer, M., Biolchini, A., Bohare, A., Cai, H., Calabrese, R., Cambon Bouzas, J., Carbone, A., Cesare, S., Chen, S., Clemencic, M., Closier, J., Cooke, N., Cottee Meldrum, J. J., De Serio, M., Decamp, D., Deschamps, O., Donohoe, A. M., Duda, P., Egorychev, V., Eirea Orro, C., Fernandez Gomez, M., Ferro-Luzzi, M., Frank, M., Franzoso, E., Galati, G., Gao, H., Gao, Y., Gershon, T., Göbel, C., Graugés, E., Grazette, L., Guittiere, M., Haimberger, J., Hajheidari, M., Halvorsen, M. M., Hartmann, M., Herd, J., Hu, J., Hutchcroft, D., Joshi, S., Karpov, M., Kauniskangas, A. M., Kotriakhova, S., Kubat, J., Kudryavtsev, V., Li, A., Li, L., Li, P., Liu, Y. L., Lobo Salvia, A., Lucchesi, D., Ma, G. M., Machefert, F., Madhan Mohan, L. R., Madurai, M. M., Marconi, U., Mauricio, J., Mazurek, M., Mitchell, S. E., Modak, A., Papanestis, A., Passalacqua, B., Passaleva, G., Patrignani, C., Perret, P., Petridis, K., Petrucci, S., Pfaller, J. P., Polci, F., Ruf, T., Saputi, A., Saur, M., Schmelling, M., Schmidt, B., Schneider, O., Sestini, L., Souza De Paula, B., Speer, J. G., Spiridenkov, E., Stevens, H., Suljik, F., Swallow, P. N., Szumlak, T., Szymanski, M., Uecker, L. H., Ustyuzhanin, A., Van Hecke, H., Vázquez Sierra, C., Vrahas, C., Walsh, J., Websdale, D., Wiedner, D., Wilkinson, G., Xu, Z., Zou, Q.
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container_issue 5
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container_title The journal of high energy physics
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creator Albicocco, P.
Alfonso Albero, A.
Amey, J. L.
Amhis, Y.
Andersson, M.
Bachmayer, M.
Biolchini, A.
Bohare, A.
Cai, H.
Calabrese, R.
Cambon Bouzas, J.
Carbone, A.
Cesare, S.
Chen, S.
Clemencic, M.
Closier, J.
Cooke, N.
Cottee Meldrum, J. J.
De Serio, M.
Decamp, D.
Deschamps, O.
Donohoe, A. M.
Duda, P.
Egorychev, V.
Eirea Orro, C.
Fernandez Gomez, M.
Ferro-Luzzi, M.
Frank, M.
Franzoso, E.
Galati, G.
Gao, H.
Gao, Y.
Gershon, T.
Göbel, C.
Graugés, E.
Grazette, L.
Guittiere, M.
Haimberger, J.
Hajheidari, M.
Halvorsen, M. M.
Hartmann, M.
Herd, J.
Hu, J.
Hutchcroft, D.
Joshi, S.
Karpov, M.
Kauniskangas, A. M.
Kotriakhova, S.
Kubat, J.
Kudryavtsev, V.
Li, A.
Li, L.
Li, P.
Liu, Y. L.
Lobo Salvia, A.
Lucchesi, D.
Ma, G. M.
Machefert, F.
Madhan Mohan, L. R.
Madurai, M. M.
Marconi, U.
Mauricio, J.
Mazurek, M.
Mitchell, S. E.
Modak, A.
Papanestis, A.
Passalacqua, B.
Passaleva, G.
Patrignani, C.
Perret, P.
Petridis, K.
Petrucci, S.
Pfaller, J. P.
Polci, F.
Ruf, T.
Saputi, A.
Saur, M.
Schmelling, M.
Schmidt, B.
Schneider, O.
Sestini, L.
Souza De Paula, B.
Speer, J. G.
Spiridenkov, E.
Stevens, H.
Suljik, F.
Swallow, P. N.
Szumlak, T.
Szymanski, M.
Uecker, L. H.
Ustyuzhanin, A.
Van Hecke, H.
Vázquez Sierra, C.
Vrahas, C.
Walsh, J.
Websdale, D.
Wiedner, D.
Wilkinson, G.
Xu, Z.
Zou, Q.
description A bstract A measurement of CP -violating observables associated with the interference of B 0 → D 0 K ⋆ (892) 0 and B 0 → D ¯ 0 K ⋆ 892 0 decay amplitudes is performed in the D 0 → K ∓ π ± ( π + π − ), D 0 → π + π − ( π + π − ), and D 0 → K + K − final states using data collected by the LHCb experiment corresponding to an integrated luminosity of 9 fb − 1 . CP -violating observables related to the interference of B s 0 → D 0 K ¯ ⋆ 892 0 and B s 0 → D ¯ 0 K ¯ ⋆ 892 0 are also measured, but no evidence for interference is found. The B 0 observables are used to constrain the parameter space of the CKM angle γ and the hadronic parameters r B 0 DK ⋆ and δ B 0 DK ⋆ with inputs from other measurements. In a combined analysis, these measurements allow for four solutions in the parameter space, only one of which is consistent with the world average.
doi_str_mv 10.1007/JHEP05(2024)025
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L. ; Amhis, Y. ; Andersson, M. ; Bachmayer, M. ; Biolchini, A. ; Bohare, A. ; Cai, H. ; Calabrese, R. ; Cambon Bouzas, J. ; Carbone, A. ; Cesare, S. ; Chen, S. ; Clemencic, M. ; Closier, J. ; Cooke, N. ; Cottee Meldrum, J. J. ; De Serio, M. ; Decamp, D. ; Deschamps, O. ; Donohoe, A. M. ; Duda, P. ; Egorychev, V. ; Eirea Orro, C. ; Fernandez Gomez, M. ; Ferro-Luzzi, M. ; Frank, M. ; Franzoso, E. ; Galati, G. ; Gao, H. ; Gao, Y. ; Gershon, T. ; Göbel, C. ; Graugés, E. ; Grazette, L. ; Guittiere, M. ; Haimberger, J. ; Hajheidari, M. ; Halvorsen, M. M. ; Hartmann, M. ; Herd, J. ; Hu, J. ; Hutchcroft, D. ; Joshi, S. ; Karpov, M. ; Kauniskangas, A. M. ; Kotriakhova, S. ; Kubat, J. ; Kudryavtsev, V. ; Li, A. ; Li, L. ; Li, P. ; Liu, Y. L. ; Lobo Salvia, A. ; Lucchesi, D. ; Ma, G. M. ; Machefert, F. ; Madhan Mohan, L. R. ; Madurai, M. M. ; Marconi, U. ; Mauricio, J. ; Mazurek, M. ; Mitchell, S. 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Phys</addtitle><description>A bstract A measurement of CP -violating observables associated with the interference of B 0 → D 0 K ⋆ (892) 0 and B 0 → D ¯ 0 K ⋆ 892 0 decay amplitudes is performed in the D 0 → K ∓ π ± ( π + π − ), D 0 → π + π − ( π + π − ), and D 0 → K + K − final states using data collected by the LHCb experiment corresponding to an integrated luminosity of 9 fb − 1 . CP -violating observables related to the interference of B s 0 → D 0 K ¯ ⋆ 892 0 and B s 0 → D ¯ 0 K ¯ ⋆ 892 0 are also measured, but no evidence for interference is found. The B 0 observables are used to constrain the parameter space of the CKM angle γ and the hadronic parameters r B 0 DK ⋆ and δ B 0 DK ⋆ with inputs from other measurements. 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L. ; Amhis, Y. ; Andersson, M. ; Bachmayer, M. ; Biolchini, A. ; Bohare, A. ; Cai, H. ; Calabrese, R. ; Cambon Bouzas, J. ; Carbone, A. ; Cesare, S. ; Chen, S. ; Clemencic, M. ; Closier, J. ; Cooke, N. ; Cottee Meldrum, J. J. ; De Serio, M. ; Decamp, D. ; Deschamps, O. ; Donohoe, A. M. ; Duda, P. ; Egorychev, V. ; Eirea Orro, C. ; Fernandez Gomez, M. ; Ferro-Luzzi, M. ; Frank, M. ; Franzoso, E. ; Galati, G. ; Gao, H. ; Gao, Y. ; Gershon, T. ; Göbel, C. ; Graugés, E. ; Grazette, L. ; Guittiere, M. ; Haimberger, J. ; Hajheidari, M. ; Halvorsen, M. M. ; Hartmann, M. ; Herd, J. ; Hu, J. ; Hutchcroft, D. ; Joshi, S. ; Karpov, M. ; Kauniskangas, A. M. ; Kotriakhova, S. ; Kubat, J. ; Kudryavtsev, V. ; Li, A. ; Li, L. ; Li, P. ; Liu, Y. L. ; Lobo Salvia, A. ; Lucchesi, D. ; Ma, G. M. ; Machefert, F. ; Madhan Mohan, L. R. ; Madurai, M. M. ; Marconi, U. ; Mauricio, J. ; Mazurek, M. ; Mitchell, S. E. ; Modak, A. ; Papanestis, A. ; Passalacqua, B. ; Passaleva, G. ; Patrignani, C. ; Perret, P. ; Petridis, K. ; Petrucci, S. ; Pfaller, J. P. ; Polci, F. ; Ruf, T. ; Saputi, A. ; Saur, M. ; Schmelling, M. ; Schmidt, B. ; Schneider, O. ; Sestini, L. ; Souza De Paula, B. ; Speer, J. G. ; Spiridenkov, E. ; Stevens, H. ; Suljik, F. ; Swallow, P. N. ; Szumlak, T. ; Szymanski, M. ; Uecker, L. H. ; Ustyuzhanin, A. ; Van Hecke, H. ; Vázquez Sierra, C. ; Vrahas, C. ; Walsh, J. ; Websdale, D. ; Wiedner, D. ; Wilkinson, G. ; Xu, Z. ; Zou, Q.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c235t-9d0121a3dbd11e9aa64f78844ddd3437a85c4410c1ce39eda48c2a8c5d68abbc3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2024</creationdate><topic>Classical and Quantum Gravitation</topic><topic>Collaboration</topic><topic>CP violation</topic><topic>Elementary Particles</topic><topic>Interference</topic><topic>Large Hadron Collider</topic><topic>Luminosity</topic><topic>Parameters</topic><topic>Physics</topic><topic>Physics and Astronomy</topic><topic>Quantum Field Theories</topic><topic>Quantum Field Theory</topic><topic>Quantum Physics</topic><topic>Quarks</topic><topic>Regular Article - Experimental Physics</topic><topic>Relativity Theory</topic><topic>Sensors</topic><topic>String Theory</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Albicocco, P.</creatorcontrib><creatorcontrib>Alfonso Albero, A.</creatorcontrib><creatorcontrib>Amey, J. 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L.</au><au>Amhis, Y.</au><au>Andersson, M.</au><au>Bachmayer, M.</au><au>Biolchini, A.</au><au>Bohare, A.</au><au>Cai, H.</au><au>Calabrese, R.</au><au>Cambon Bouzas, J.</au><au>Carbone, A.</au><au>Cesare, S.</au><au>Chen, S.</au><au>Clemencic, M.</au><au>Closier, J.</au><au>Cooke, N.</au><au>Cottee Meldrum, J. J.</au><au>De Serio, M.</au><au>Decamp, D.</au><au>Deschamps, O.</au><au>Donohoe, A. M.</au><au>Duda, P.</au><au>Egorychev, V.</au><au>Eirea Orro, C.</au><au>Fernandez Gomez, M.</au><au>Ferro-Luzzi, M.</au><au>Frank, M.</au><au>Franzoso, E.</au><au>Galati, G.</au><au>Gao, H.</au><au>Gao, Y.</au><au>Gershon, T.</au><au>Göbel, C.</au><au>Graugés, E.</au><au>Grazette, L.</au><au>Guittiere, M.</au><au>Haimberger, J.</au><au>Hajheidari, M.</au><au>Halvorsen, M. M.</au><au>Hartmann, M.</au><au>Herd, J.</au><au>Hu, J.</au><au>Hutchcroft, D.</au><au>Joshi, S.</au><au>Karpov, M.</au><au>Kauniskangas, A. M.</au><au>Kotriakhova, S.</au><au>Kubat, J.</au><au>Kudryavtsev, V.</au><au>Li, A.</au><au>Li, L.</au><au>Li, P.</au><au>Liu, Y. L.</au><au>Lobo Salvia, A.</au><au>Lucchesi, D.</au><au>Ma, G. M.</au><au>Machefert, F.</au><au>Madhan Mohan, L. R.</au><au>Madurai, M. M.</au><au>Marconi, U.</au><au>Mauricio, J.</au><au>Mazurek, M.</au><au>Mitchell, S. E.</au><au>Modak, A.</au><au>Papanestis, A.</au><au>Passalacqua, B.</au><au>Passaleva, G.</au><au>Patrignani, C.</au><au>Perret, P.</au><au>Petridis, K.</au><au>Petrucci, S.</au><au>Pfaller, J. P.</au><au>Polci, F.</au><au>Ruf, T.</au><au>Saputi, A.</au><au>Saur, M.</au><au>Schmelling, M.</au><au>Schmidt, B.</au><au>Schneider, O.</au><au>Sestini, L.</au><au>Souza De Paula, B.</au><au>Speer, J. G.</au><au>Spiridenkov, E.</au><au>Stevens, H.</au><au>Suljik, F.</au><au>Swallow, P. N.</au><au>Szumlak, T.</au><au>Szymanski, M.</au><au>Uecker, L. H.</au><au>Ustyuzhanin, A.</au><au>Van Hecke, H.</au><au>Vázquez Sierra, C.</au><au>Vrahas, C.</au><au>Walsh, J.</au><au>Websdale, D.</au><au>Wiedner, D.</au><au>Wilkinson, G.</au><au>Xu, Z.</au><au>Zou, Q.</au><aucorp>The LHCb collaboration</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Study of CP violation in B0→ DK⋆(892)0 decays with D → Kπ(ππ), ππ(ππ), and KK final states</atitle><jtitle>The journal of high energy physics</jtitle><stitle>J. High Energ. Phys</stitle><date>2024-05-03</date><risdate>2024</risdate><volume>2024</volume><issue>5</issue><spage>25</spage><pages>25-</pages><artnum>25</artnum><issn>1029-8479</issn><eissn>1029-8479</eissn><abstract>A bstract A measurement of CP -violating observables associated with the interference of B 0 → D 0 K ⋆ (892) 0 and B 0 → D ¯ 0 K ⋆ 892 0 decay amplitudes is performed in the D 0 → K ∓ π ± ( π + π − ), D 0 → π + π − ( π + π − ), and D 0 → K + K − final states using data collected by the LHCb experiment corresponding to an integrated luminosity of 9 fb − 1 . CP -violating observables related to the interference of B s 0 → D 0 K ¯ ⋆ 892 0 and B s 0 → D ¯ 0 K ¯ ⋆ 892 0 are also measured, but no evidence for interference is found. The B 0 observables are used to constrain the parameter space of the CKM angle γ and the hadronic parameters r B 0 DK ⋆ and δ B 0 DK ⋆ with inputs from other measurements. In a combined analysis, these measurements allow for four solutions in the parameter space, only one of which is consistent with the world average.</abstract><cop>Berlin/Heidelberg</cop><pub>Springer Berlin Heidelberg</pub><doi>10.1007/JHEP05(2024)025</doi><orcidid>https://orcid.org/0000-0002-5972-6290</orcidid><oa>free_for_read</oa></addata></record>
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source Publicly Available Content Database; Springer Nature - SpringerLink Journals - Fully Open Access
subjects Classical and Quantum Gravitation
Collaboration
CP violation
Elementary Particles
Interference
Large Hadron Collider
Luminosity
Parameters
Physics
Physics and Astronomy
Quantum Field Theories
Quantum Field Theory
Quantum Physics
Quarks
Regular Article - Experimental Physics
Relativity Theory
Sensors
String Theory
title Study of CP violation in B0→ DK⋆(892)0 decays with D → Kπ(ππ), ππ(ππ), and KK final states
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