Search for CP violation in $$ {D}_{(s)}^{+}\to {h}^{+}{\pi}^0 $$ and $$ {D}_{(s)}^{+}\to {h}^{+}\eta $$ decays

Author:

,Aaij R.,Abellán Beteta C.,Ackernley T.,Adeva B.,Adinolfi M.,Afsharnia H.,Aidala C. A.,Aiola S.,Ajaltouni Z.,Akar S.,Albrecht J.,Alessio F.,Alexander M.,Alfonso Albero A.,Aliouche Z.,Alkhazov G.,Alvarez Cartelle P.,Amato S.,Amhis Y.,An L.,Anderlini L.,Andreianov A.,Andreotti M.,Archilli F.,Artamonov A.,Artuso M.,Arzymatov K.,Aslanides E.,Atzeni M.,Audurier B.,Bachmann S.,Bachmayer M.,Back J. J.,Baladron Rodriguez P.,Balagura V.,Baldini W.,Baptista Leite J.,Barlow R. J.,Barsuk S.,Barter W.,Bartolini M.,Baryshnikov F.,Basels J. M.,Bassi G.,Batsukh B.,Battig A.,Bay A.,Becker M.,Bedeschi F.,Bediaga I.,Beiter A.,Belavin V.,Belin S.,Bellee V.,Belous K.,Belov I.,Belyaev I.,Bencivenni G.,Ben-Haim E.,Berezhnoy A.,Bernet R.,Berninghoff D.,Bernstein H. C.,Bertella C.,Bertolin A.,Betancourt C.,Betti F.,Bezshyiko Ia.,Bhasin S.,Bhom J.,Bian L.,Bieker M. S.,Bifani S.,Billoir P.,Birch M.,Bishop F. C. R.,Bitadze A.,Bizzeti A.,Bjørn M.,Blago M. P.,Blake T.,Blanc F.,Blusk S.,Bobulska D.,Boelhauve J. A.,Boente Garcia O.,Boettcher T.,Boldyrev A.,Bondar A.,Bondar N.,Borghi S.,Borisyak M.,Borsato M.,Borsuk J. T.,Bouchiba S. A.,Bowcock T. J. V.,Boyer A.,Bozzi C.,Bradley M. J.,Braun S.,Brea Rodriguez A.,Brodski M.,Brodzicka J.,Brossa Gonzalo A.,Brundu D.,Buonaura A.,Burr C.,Bursche A.,Butkevich A.,Butter J. S.,Buytaert J.,Byczynski W.,Cadeddu S.,Cai H.,Calabrese R.,Calefice L.,Calero Diaz L.,Cali S.,Calladine R.,Calvi M.,Calvo Gomez M.,Camargo Magalhaes P.,Camboni A.,Campana P.,Campoverde Quezada A. F.,Capelli S.,Capriotti L.,Carbone A.,Carboni G.,Cardinale R.,Cardini A.,Carli I.,Carniti P.,Carus L.,Carvalho Akiba K.,Casais Vidal A.,Casse G.,Cattaneo M.,Cavallero G.,Celani S.,Cerasoli J.,Chadwick A. J.,Chapman M. G.,Charles M.,Charpentier Ph.,Chatzikonstantinidis G.,Chavez Barajas C. A.,Chefdeville M.,Chen C.,Chen S.,Chernov A.,Chobanova V.,Cholak S.,Chrzaszcz M.,Chubykin A.,Chulikov V.,Ciambrone P.,Cicala M. F.,Cid Vidal X.,Ciezarek G.,Clarke P. E. L.,Clemencic M.,Cliff H. V.,Closier J.,Cobbledick J. L.,Coco V.,Coelho J. A. B.,Cogan J.,Cogneras E.,Cojocariu L.,Collins P.,Colombo T.,Congedo L.,Contu A.,Cooke N.,Coombs G.,Corti G.,Costa Sobral C. M.,Couturier B.,Craik D. C.,Crkovská J.,Cruz Torres M.,Currie R.,Da Silva C. L.,Dall’Occo E.,Dalseno J.,D’Ambrosio C.,Danilina A.,d’Argent P.,Davis A.,De Aguiar Francisco O.,De Bruyn K.,De Capua S.,De Cian M.,De Miranda J. M.,De Paula L.,De Serio M.,De Simone D.,De Simone P.,de Vries J. A.,Dean C. T.,Decamp D.,Del Buono L.,Delaney B.,Dembinski H.-P.,Dendek A.,Denysenko V.,Derkach D.,Deschamps O.,Desse F.,Dettori F.,Dey B.,Di Nezza P.,Didenko S.,Dieste Maronas L.,Dijkstra H.,Dobishuk V.,Donohoe A. M.,Dordei F.,dos Reis A. C.,Douglas L.,Dovbnya A.,Downes A. G.,Dreimanis K.,Dudek M. W.,Dufour L.,Duk V.,Durante P.,Durham J. M.,Dutta D.,Dziurda A.,Dzyuba A.,Easo S.,Egede U.,Egorychev V.,Eidelman S.,Eisenhardt S.,Ek-In S.,Eklund L.,Ely S.,Ene A.,Epple E.,Escher S.,Eschle J.,Esen S.,Evans T.,Falabella A.,Fan J.,Fan Y.,Fang B.,Farry S.,Fazzini D.,Féo M.,Fernandez Prieto A.,Fernandez-tenllado Arribas J. M.,Ferrari F.,Ferreira Lopes L.,Ferreira Rodrigues F.,Ferreres Sole S.,Ferrillo M.,Ferro-Luzzi M.,Filippov S.,Fini R. A.,Fiorini M.,Firlej M.,Fischer K. M.,Fitzpatrick C.,Fiutowski T.,Fleuret F.,Fontana M.,Fontanelli F.,Forty R.,Franco Lima V.,Franco Sevilla M.,Frank M.,Franzoso E.,Frau G.,Frei C.,Friday D. A.,Fu J.,Fuehring Q.,Funk W.,Gabriel E.,Gaintseva T.,Gallas Torreira A.,Galli D.,Gambetta S.,Gan Y.,Gandelman M.,Gandini P.,Gao Y.,Garau M.,Garcia Martin L. M.,Garcia Moreno P.,García Pardiñas J.,Garcia Plana B.,Garcia Rosales F. A.,Garrido L.,Gaspar C.,Geertsema R. E.,Gerick D.,Gerken L. L.,Gersabeck E.,Gersabeck M.,Gershon T.,Gerstel D.,Ghez Ph.,Gibson V.,Giemza H. 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J.,Hushchyn M.,Hutchcroft D.,Hynds D.,Ibis P.,Idzik M.,Ilin D.,Ilten P.,Inglessi A.,Ishteev A.,Ivshin K.,Jacobsson R.,Jakobsen S.,Jans E.,Jashal B. K.,Jawahery A.,Jevtic V.,Jezabek M.,Jiang F.,John M.,Johnson D.,Jones C. R.,Jones T. P.,Jost B.,Jurik N.,Kandybei S.,Kang Y.,Karacson M.,Karpov M.,Keizer F.,Kenzie M.,Ketel T.,Khanji B.,Kharisova A.,Kholodenko S.,Kirn T.,Kirsebom V. S.,Kitouni O.,Klaver S.,Klimaszewski K.,Koliiev S.,Kondybayeva A.,Konoplyannikov A.,Kopciewicz P.,Kopecna R.,Koppenburg P.,Korolev M.,Kostiuk I.,Kot O.,Kotriakhova S.,Kravchenko P.,Kravchuk L.,Krawczyk R. D.,Kreps M.,Kress F.,Kretzschmar S.,Krokovny P.,Krupa W.,Krzemien W.,Kucewicz W.,Kucharczyk M.,Kudryavtsev V.,Kuindersma H. S.,Kunde G. J.,Kvaratskheliya T.,Lacarrere D.,Lafferty G.,Lai A.,Lampis A.,Lancierini D.,Lane J. J.,Lane R.,Lanfranchi G.,Langenbruch C.,Langer J.,Lantwin O.,Latham T.,Lazzari F.,Le Gac R.,Lee S. H.,Lefèvre R.,Leflat A.,Legotin S.,Leroy O.,Lesiak T.,Leverington B.,Li H.,Li L.,Li P.,Li S.,Li Y.,Li Y.,Li Z.,Liang X.,Lin T.,Lindner R.,Lisovskyi V.,Litvinov R.,Liu G.,Liu H.,Liu S.,Liu X.,Loi A.,Lomba Castro J.,Longstaff I.,Lopes J. H.,Lovell G. H.,Lu Y.,Lucchesi D.,Luchuk S.,Lucio Martinez M.,Lukashenko V.,Luo Y.,Lupato A.,Luppi E.,Lupton O.,Lusiani A.,Lyu X.,Ma L.,Ma R.,Maccolini S.,Machefert F.,Maciuc F.,Macko V.,Mackowiak P.,Maddrell-Mander S.,Madejczyk O.,Madhan Mohan L. R.,Maev O.,Maevskiy A.,Maisuzenko D.,Majewski M. W.,Malczewski J. J.,Malde S.,Malecki B.,Malinin A.,Maltsev T.,Malygina H.,Manca G.,Mancinelli G.,Manuzzi D.,Marangotto D.,Maratas J.,Marchand J. F.,Marconi U.,Mariani S.,Marin Benito C.,Marinangeli M.,Marino P.,Marks J.,Marshall P. J.,Martellotti G.,Martinazzoli L.,Martinelli M.,Martinez Santos D.,Martinez Vidal F.,Massafferri A.,Materok M.,Matev R.,Mathad A.,Mathe Z.,Matiunin V.,Matteuzzi C.,Mattioli K. R.,Mauri A.,Maurice E.,Mauricio J.,Mazurek M.,McCann M.,Mcconnell L.,Mcgrath T. H.,McNab A.,McNulty R.,Mead J. V.,Meadows B.,Meaux C.,Meier G.,Meinert N.,Melnychuk D.,Meloni S.,Merk M.,Merli A.,Meyer Garcia L.,Mikhasenko M.,Milanes D. A.,Millard E.,Milovanovic M.,Minard M.-N.,Minotti A.,Minzoni L.,Mitchell S. E.,Mitreska B.,Mitzel D. S.,Mödden A.,Mohammed R. A.,Moise R. D.,Mombächer T.,Monroy I. A.,Monteil S.,Morandin M.,Morello G.,Morello M. J.,Moron J.,Morris A. B.,Morris A. G.,Mountain R.,Mu H.,Muheim F.,Mukherjee M.,Mulder M.,Müller D.,Müller K.,Murphy C. H.,Murray D.,Muzzetto P.,Naik P.,Nakada T.,Nandakumar R.,Nanut T.,Nasteva I.,Needham M.,Neri I.,Neri N.,Neubert S.,Neufeld N.,Newcombe R.,Nguyen T. D.,Nguyen-Mau C.,Niel E. M.,Nieswand S.,Nikitin N.,Nolte N. S.,Nunez C.,Oblakowska-Mucha A.,Obraztsov V.,O’Hanlon D. P.,Oldeman R.,Olivares M. E.,Onderwater C. J. G.,Ossowska A.,Otalora Goicochea J. M.,Ovsiannikova T.,Owen P.,Oyanguren A.,Pagare B.,Pais P. 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B.,Shmanin E.,Shupperd J. D.,Siddi B. G.,Silva Coutinho R.,Simi G.,Simone S.,Skidmore N.,Skwarnicki T.,Slater M. W.,Slazyk I.,Smallwood J. C.,Smeaton J. G.,Smetkina A.,Smith E.,Smith M.,Snoch A.,Soares M.,Soares Lavra L.,Sokoloff M. D.,Soler F. J. P.,Solovev A.,Solovyev I.,Souza De Almeida F. L.,Souza De Paula B.,Spaan B.,Spadaro Norella E.,Spradlin P.,Stagni F.,Stahl M.,Stahl S.,Stefko P.,Steinkamp O.,Stenyakin O.,Stevens H.,Stone S.,Stramaglia M. E.,Straticiuc M.,Strekalina D.,Suljik F.,Sun J.,Sun L.,Sun Y.,Svihra P.,Swallow P. N.,Swientek K.,Szabelski A.,Szumlak T.,Szymanski M.,Taneja S.,Teubert F.,Thomas E.,Thomson K. A.,Tisserand V.,T’Jampens S.,Tobin M.,Tomassetti L.,Torres Machado D.,Tou D. Y.,Tran M. T.,Trifonova E.,Trippl C.,Tuci G.,Tully A.,Tuning N.,Ukleja A.,Unverzagt D. J.,Ursov E.,Usachov A.,Ustyuzhanin A.,Uwer U.,Vagner A.,Vagnoni V.,Valassi A.,Valenti G.,Valls Canudas N.,van Beuzekom M.,Van Dijk M.,van Herwijnen E.,Van Hulse C. 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B.,Zou Q.,Zucchelli S.,Zuliani D.,Zunica G.

Abstract

Abstract Searches for CP violation in the two-body decays $$ {D}_{(s)}^{+}\to {h}^{+}{\pi}^0 $$ D s + h + π 0 and $$ {D}_{(s)}^{+}\to {h}^{+}\eta $$ D s + h + η (where h+ denotes a π+ or K+ meson) are performed using pp collision data collected by the LHCb experiment corresponding to either 9 fb1 or 6 fb1 of integrated luminosity. The π0 and η mesons are reconstructed using the e+eγ final state, which can proceed as three-body decays π0→ e+eγ and η → e+eγ, or via the two-body decays π0→ γγ and η → γγ followed by a photon conversion. The measurements are made relative to the control modes $$ {D}_{(s)}^{+}\to {K}_{\mathrm{S}}^0{h}^{+} $$ D s + K S 0 h + to cancel the production and detection asymmetries. The CP asymmetries are measured to be$$ {\displaystyle \begin{array}{c}{\mathcal{A}}_{CP}\left({D}^{+}\to {\pi}^{+}{\pi}^0\right)=\left(-1.3\pm 0.9\pm 0.6\right)\%,\\ {}{\mathcal{A}}_{CP}\left({D}^{+}\to {K}^{+}{\pi}^0\right)=\left(-3.2\pm 4.7\pm 2.1\right)\%,\\ {}\begin{array}{c}{\mathcal{A}}_{CP}\left({D}^{+}\to {\pi}^{+}\eta \right)=\left(-0.2\pm 0.8\pm 0.4\right)\%,\\ {}{\mathcal{A}}_{CP}\left({D}^{+}\to {K}^{+}\eta \right)=\left(-6\pm 10\pm 4\right)\%,\\ {}\begin{array}{c}{\mathcal{A}}_{CP}\left({D}_s^{+}\to {K}^{+}{\pi}^0\right)=\left(-0.8\pm 3.9\pm 1.2\right)\%,\\ {}\begin{array}{c}{\mathcal{A}}_{CP}\left({D}_s^{+}\to {\pi}^{+}\eta \right)=\left(0.8\pm 0.7\pm 0.5\right)\%,\\ {}{\mathcal{A}}_{CP}\left({D}_s^{+}\to {K}^{+}\eta \right)=\left(0.9\pm 3.7\pm 1.1\right)\%,\end{array}\end{array}\end{array}\end{array}} $$ A CP D + π + π 0 = 1.3 ± 0.9 ± 0.6 % , A CP D + K + π 0 = 3.2 ± 4.7 ± 2.1 % , A CP D + π + η = 0.2 ± 0.8 ± 0.4 % , A CP D + K + η = 6 ± 10 ± 4 % , A CP D s + K + π 0 = 0.8 ± 3.9 ± 1.2 % , A CP D s + π + η = 0.8 ± 0.7 ± 0.5 % , A CP D s + K + η = 0.9 ± 3.7 ± 1.1 % , where the first uncertainties are statistical and the second systematic. These results are consistent with no CP violation and mostly constitute the most precise measurements of $$ {\mathcal{A}}_{CP} $$ A CP in these decay modes to date.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

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