Pith. sign in

REVIEW

Measurement of indirect CP-violating asymmetries in $D^0\to K^+K^-$ and $D^0\to \pi^+\pi^-$ decays at CDF

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 1410.5435 v2 pith:FLIOR6HZ submitted 2014-10-20 hep-ex hep-ph

CDF Collaboration: T. Aaltonen , S. Amerio , D. Amidei , A. Anastassov , A. Annovi , J. Antos , G. Apollinari , J.A. Appel
show 393 more authors
T. Arisawa A. Artikov J. Asaadi W. Ashmanskas B. Auerbach A. Aurisano F. Azfar W. Badgett T. Bae A. Barbaro-Galtieri V.E. Barnes B.A. Barnett P. Barria P. Bartos M. Bauce F. Bedeschi S. Behari G. Bellettini J. Bellinger D. Benjamin A. Beretvas A. Bhatti K.R. Bland B. Blumenfeld A. Bocci A. Bodek D. Bortoletto J. Boudreau A. Boveia L. Brigliadori C. Bromberg E. Brucken J. Budagov H.S. Budd K. Burkett G. Busetto P. Bussey P. Butti A. Buzatu A. Calamba S. Camarda M. Campanelli F. Canelli B. Carls D. Carlsmith R. Carosi S. Carrillo B. Casal M. Casarsa A. Castro P. Catastini D. Cauz V. Cavaliere A. Cerri L. Cerrito Y.C. Chen M. Chertok G. Chiarelli G. Chlachidze K. Cho D. Chokheli A. Clark C. Clarke M.E. Convery J. Conway M. Corbo M. Cordelli C.A. Cox D.J. Cox M. Cremonesi D. Cruz J. Cuevas R. Culbertson N. d'Ascenzo M. Datta P. de Barbaro L. Demortier L. Marchese M. Deninno F. Devoto M. D'Errico A. Di Canto B. Di Ruzza J.R. Dittmann M. D'Onofrio S. Donati M. Dorigo A. Driutti K. Ebina R. Edgar A. Elagin R. Erbacher S. Errede B. Esham S. Farrington J.P. Fernández Ramos R. Field G. Flanagan R. Forrest M. Franklin J.C. Freeman H. Frisch Y. Funakoshi C. Galloni A.F. Garfinkel P. Garosi H. Gerberich E. Gerchtein S. Giagu V. Giakoumopoulou K. Gibson C.M. Ginsburg N. Giokaris P. Giromini V. Glagolev D. Glenzinski M. Gold D. Goldin A. Golossanov G. Gomez G. Gomez-Ceballos M. Goncharov O. González López I. Gorelov A.T. Goshaw K. Goulianos E. Gramellini C. Grosso-Pilcher R.C. Group J. Guimaraes da Costa S.R. Hahn J.Y. Han F. Happacher K. Hara M. Hare R.F. Harr T. Harrington-Taber K. Hatakeyama C. Hays J. Heinrich M. Herndon A. Hocker Z. Hong W. Hopkins S. Hou R.E. Hughes U. Husemann M. Hussein J. Huston G. Introzzi M. Iori A. Ivanov E. James D. Jang B. Jayatilaka E.J. Jeon S. Jindariani M. Jones K.K. Joo S.Y. Jun T.R. Junk M. Kambeitz T. Kamon P.E. Karchin A. Kasmi Y. Kato W. Ketchum J. Keung B. Kilminster D.H. Kim H.S. Kim J.E. Kim M.J. Kim S.B. Kim S.H. Kim Y.K. Kim Y.J. Kim N. Kimura M. Kirby K. Knoepfel K. Kondo D.J. Kong J. Konigsberg A.V. Kotwal M. Kreps J. Kroll M. Kruse T. Kuhr M. Kurata A.T. Laasanen S. Lammel M. Lancaster K. Lannon G. Latino H.S. Lee J.S. Lee S. Leo S. Leone J.D. Lewis A. Limosani E. Lipeles A. Lister H. Liu Q. Liu T. Liu S. Lockwitz A. Loginov A. Lucà D. Lucchesi J. Lueck P. Lujan P. Lukens G. Lungu J. Lys R. Lysak R. Madrak P. Maestro S. Malik G. Manca A. Manousakis-Katsikakis F. Margaroli P. Marino K. Matera M.E. Mattson A. Mazzacane P. Mazzanti R. McNulty A. Mehta P. Mehtala C. Mesropian T. Miao D. Mietlicki A. Mitra H. Miyake S. Moed N. Moggi C.S. Moon R. Moore M.J. Morello A. Mukherjee Th. Muller P. Murat M. Mussini J. Nachtman Y. Nagai J. Naganoma I. Nakano A. Napier J. Nett C. Neu T. Nigmanov L. Nodulman S.Y. Noh O. Norniella L. Oakes S.H. Oh Y.D. Oh I. Oksuzian T. Okusawa R. Orava L. Ortolan C. Pagliarone E. Palencia P. Palni V. Papadimitriou W. Parker G. Pauletta M. Paulini C. Paus T.J. Phillips E. Pianori J. Pilot K. Pitts C. Plager L. Pondrom S. Poprocki K. Potamianos F. Prokoshin A. Pranko F. Ptohos G. Punzi I. Redondo Fernández P. Renton M. Rescigno F. Rimondi L. Ristori A. Robson T. Rodriguez S. Rolli M. Ronzani R. Roser J.L. Rosner F. Ruffini A. Ruiz J. Russ V. Rusu W.K. Sakumoto Y. Sakurai L. Santi K. Sato V. Saveliev A. Savoy-Navarro P. Schlabach E.E. Schmidt T. Schwarz L. Scodellaro F. Scuri S. Seidel Y. Seiya A. Semenov F. Sforza S.Z. Shalhout T. Shears P.F. Shepard M. Shimojima M. Shochet I. Shreyber-Tecker A. Simonenko K. Sliwa J.R. Smith F.D. Snider V. Sorin H. Song M. Stancari R. St. Denis D. Stentz J. Strologas Y. Sudo A. Sukhanov I. Suslov K. Takemasa Y. Takeuchi J. Tang M. Tecchio P.K. Teng J. Thom E. Thomson V. Thukral D. Toback S. Tokar K. Tollefson T. Tomura D. Tonelli S. Torre D. Torretta P. Totaro M. Trovato F. Ukegawa S. Uozumi F. Vázquez G. Velev C. Vellidis C. Vernieri M. Vidal R. Vilar J. Vizán M. Vogel G. Volpi P. Wagner R. Wallny S.M. Wang D. Waters W.C. Wester III D. Whiteson A.B. Wicklund S. Wilbur H.H. Williams J.S. Wilson P. Wilson B.L. Winer P. Wittich S. Wolbers H. Wolfe T. Wright X. Wu Z. Wu K. Yamamoto D. Yamato T. Yang U.K. Yang Y.C. Yang W.-M. Yao G.P. Yeh K. Yi J. Yoh K. Yorita T. Yoshida G.B. Yu I. Yu A.M. Zanetti Y. Zeng C. Zhou S. Zucchelli
This is my paper · ORCID
classification hep-exhep-ph
keywords decaysgammaanticharmasymmetriescharmcp-violatingdecayindirect
verification ladder T0 review T1 audit T2 compute T3 formal

Signed reviews

No signed human review yet.

0 comments
abstract

We report a measurement of the indirect CP-violating asymmetries ($A_{\Gamma}$) between effective lifetimes of anticharm and charm mesons reconstructed in $D^0\to K^+ K^-$ and $D^0\to \pi^+\pi^-$ decays. We use the full data set of proton-antiproton collisions collected by the Collider Detector at Fermilab experiment and corresponding to $9.7$~fb$^{-1}$ of integrated luminosity. The strong-interaction decay $D^{*+}\to D^0\pi^+$ is used to identify the meson at production as $D^0$ or $\overline{D}^0$. We statistically subtract $D^0$ and $\overline{D}^0$ mesons originating from $b$-hadron decays and measure the yield asymmetry between anticharm and charm decays as a function of decay time. We measure $A_\Gamma (K^+K^-) = (-0.19 \pm 0.15 (stat) \pm 0.04 (syst))\%$ and $A_\Gamma (\pi^+\pi^-)= (-0.01 \pm 0.18 (stat) \pm 0.03 (syst))\%$. The results are consistent with the hypothesis of CP symmetry and their combination yields $A_\Gamma = (-0.12 \pm 0.12)\%$.

Discussion (0). Continue with ORCID to comment.

Pith tools