Studies of the resonance structure in D 0 → K ∓ π ± π ± π ∓ decays

Amplitude models are constructed to describe the resonance structure of and decays using collision data collected at centre-of-mass energies of 7 and 8 TeV with the LHCb experiment, corresponding to an integrated luminosity of 3.0  . The largest contributions to both decay amplitudes are found to co...

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Veröffentlicht in:The European physical journal. C, Particles and fields Particles and fields, 2018, Vol.78 (6), p.443-31
Hauptverfasser: Aaij, R, Adeva, B, Adinolfi, M, Ajaltouni, Z, Akar, S, Albrecht, J, Alessio, F, Alexander, M, Alfonso Albero, A, Ali, S, Alkhazov, G, Alvarez Cartelle, P, Alves, Jr, A A, Amato, S, Amerio, S, Amhis, Y, An, L, Anderlini, L, Andreassi, G, Andreotti, M, Andrews, J E, Appleby, R B, Archilli, F, d'Argent, P, Arnau Romeu, J, Artamonov, A, Artuso, M, Aslanides, E, Atzeni, M, Auriemma, G, Baalouch, M, Babuschkin, I, Bachmann, S, Back, J J, Badalov, A, Baesso, C, Baker, S, Balagura, V, Baldini, W, Baranov, A, Barlow, R J, Barschel, C, Barsuk, S, Barter, W, Baryshnikov, F, Batozskaya, V, Battista, V, Bay, A, Beaucourt, L, Beddow, J, Bedeschi, F, Bediaga, I, Beiter, A, Bel, L J, Beliy, N, Bellee, V, Belloli, N, Belous, K, Belyaev, I, Ben-Haim, E, Bencivenni, G, Benson, S, Beranek, S, Berezhnoy, A, Bernet, R, Berninghoff, D, Bertholet, E, Bertolin, A, Betancourt, C, Betti, F, Bettler, M O, van Beuzekom, M, Bezshyiko, Ia, Bifani, S, Billoir, P, Birnkraut, A, Bizzeti, A, Bjørn, M, Blake, T, Blanc, F, Blusk, S, Bocci, V, Boettcher, T, Bondar, A, Bondar, N, Bordyuzhin, I, Borghi, S, Borisyak, M, Borsato, M, Bossu, F, Boubdir, M, Bowcock, T J V, Bowen, E, Bozzi, C, Braun, S, Brodzicka, J, Brundu, D, Buchanan, E, Burr, C, Bursche, A
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container_title The European physical journal. C, Particles and fields
container_volume 78
creator Aaij, R
Adeva, B
Adinolfi, M
Ajaltouni, Z
Akar, S
Albrecht, J
Alessio, F
Alexander, M
Alfonso Albero, A
Ali, S
Alkhazov, G
Alvarez Cartelle, P
Alves, Jr, A A
Amato, S
Amerio, S
Amhis, Y
An, L
Anderlini, L
Andreassi, G
Andreotti, M
Andrews, J E
Appleby, R B
Archilli, F
d'Argent, P
Arnau Romeu, J
Artamonov, A
Artuso, M
Aslanides, E
Atzeni, M
Auriemma, G
Baalouch, M
Babuschkin, I
Bachmann, S
Back, J J
Badalov, A
Baesso, C
Baker, S
Balagura, V
Baldini, W
Baranov, A
Barlow, R J
Barschel, C
Barsuk, S
Barter, W
Baryshnikov, F
Batozskaya, V
Battista, V
Bay, A
Beaucourt, L
Beddow, J
Bedeschi, F
Bediaga, I
Beiter, A
Bel, L J
Beliy, N
Bellee, V
Belloli, N
Belous, K
Belyaev, I
Ben-Haim, E
Bencivenni, G
Benson, S
Beranek, S
Berezhnoy, A
Bernet, R
Berninghoff, D
Bertholet, E
Bertolin, A
Betancourt, C
Betti, F
Bettler, M O
van Beuzekom, M
Bezshyiko, Ia
Bifani, S
Billoir, P
Birnkraut, A
Bizzeti, A
Bjørn, M
Blake, T
Blanc, F
Blusk, S
Bocci, V
Boettcher, T
Bondar, A
Bondar, N
Bordyuzhin, I
Borghi, S
Borisyak, M
Borsato, M
Bossu, F
Boubdir, M
Bowcock, T J V
Bowen, E
Bozzi, C
Braun, S
Brodzicka, J
Brundu, D
Buchanan, E
Burr, C
Bursche, A
description Amplitude models are constructed to describe the resonance structure of and decays using collision data collected at centre-of-mass energies of 7 and 8 TeV with the LHCb experiment, corresponding to an integrated luminosity of 3.0  . The largest contributions to both decay amplitudes are found to come from axial resonances, with decay modes and being prominent in and , respectively. Precise measurements of the lineshape parameters and couplings of the , and resonances are made, and a quasi model-independent study of the resonance is performed. The coherence factor of the decays is calculated from the amplitude models to be , which is consistent with direct measurements. These models will be useful in future measurements of the unitary-triangle angle and studies of charm mixing and violation.
doi_str_mv 10.1140/epjc/s10052-018-5758-4
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These models will be useful in future measurements of the unitary-triangle angle and studies of charm mixing and violation.</description><subject>Couplings</subject><subject>CP violation</subject><subject>Decay</subject><subject>Large Hadron Collider</subject><subject>Luminosity</subject><issn>1434-6044</issn><issn>1434-6052</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><sourceid>BENPR</sourceid><recordid>eNpdkD1Ow0AUhFcIRILhCtFKNDQmb39tlyj8iiAKoLbW62fhKLGN11uko0LUcBKuwAW4Q06CEQEkmnmj0afR6BEyYnDImIQxNjM7dgxA8RBYHKpIxaHcIEMmhQx1H2_-eikHZMe5GQBwCfE2GQhIlFZSD8nVTefzEh2tC9rdI23R1ZWpLFLXtd52vkVaVvSYAl09vdBLunp-pR-P9P3tT7-iHK1Zul2yVZi5w731Dcjd6cnt5DycXp9dTI6mYcN00oWxLqwVNs5QFDnPpAVkCaAqbARCRZlGLCCSxigtmekd51EmFM8TJTOrhAjIwXdv09YPHl2XLkpncT43FdbepZyDkkywvi4g-__QWe3bql-XcpBxnGjOeU-N1pTPFpinTVsuTLtMfx4lPgEvIm4z</recordid><startdate>2018</startdate><enddate>2018</enddate><creator>Aaij, R</creator><creator>Adeva, 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A</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-p169t-86fcc3c8be3fd2b4c0e190e5fc70357b6eef074aa5641a074227b352d954bc533</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2018</creationdate><topic>Couplings</topic><topic>CP violation</topic><topic>Decay</topic><topic>Large Hadron Collider</topic><topic>Luminosity</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Aaij, R</creatorcontrib><creatorcontrib>Adeva, B</creatorcontrib><creatorcontrib>Adinolfi, M</creatorcontrib><creatorcontrib>Ajaltouni, Z</creatorcontrib><creatorcontrib>Akar, S</creatorcontrib><creatorcontrib>Albrecht, J</creatorcontrib><creatorcontrib>Alessio, F</creatorcontrib><creatorcontrib>Alexander, M</creatorcontrib><creatorcontrib>Alfonso Albero, A</creatorcontrib><creatorcontrib>Ali, S</creatorcontrib><creatorcontrib>Alkhazov, G</creatorcontrib><creatorcontrib>Alvarez Cartelle, 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C, Particles and fields</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Aaij, R</au><au>Adeva, B</au><au>Adinolfi, M</au><au>Ajaltouni, Z</au><au>Akar, S</au><au>Albrecht, J</au><au>Alessio, F</au><au>Alexander, M</au><au>Alfonso Albero, A</au><au>Ali, S</au><au>Alkhazov, G</au><au>Alvarez Cartelle, P</au><au>Alves, Jr, A A</au><au>Amato, S</au><au>Amerio, S</au><au>Amhis, Y</au><au>An, L</au><au>Anderlini, L</au><au>Andreassi, G</au><au>Andreotti, M</au><au>Andrews, J E</au><au>Appleby, R B</au><au>Archilli, F</au><au>d'Argent, P</au><au>Arnau Romeu, J</au><au>Artamonov, A</au><au>Artuso, M</au><au>Aslanides, E</au><au>Atzeni, M</au><au>Auriemma, G</au><au>Baalouch, M</au><au>Babuschkin, I</au><au>Bachmann, S</au><au>Back, J J</au><au>Badalov, A</au><au>Baesso, C</au><au>Baker, S</au><au>Balagura, V</au><au>Baldini, W</au><au>Baranov, A</au><au>Barlow, R J</au><au>Barschel, C</au><au>Barsuk, S</au><au>Barter, W</au><au>Baryshnikov, F</au><au>Batozskaya, V</au><au>Battista, V</au><au>Bay, A</au><au>Beaucourt, L</au><au>Beddow, J</au><au>Bedeschi, F</au><au>Bediaga, I</au><au>Beiter, A</au><au>Bel, L J</au><au>Beliy, N</au><au>Bellee, V</au><au>Belloli, N</au><au>Belous, K</au><au>Belyaev, I</au><au>Ben-Haim, E</au><au>Bencivenni, G</au><au>Benson, S</au><au>Beranek, S</au><au>Berezhnoy, A</au><au>Bernet, R</au><au>Berninghoff, D</au><au>Bertholet, E</au><au>Bertolin, A</au><au>Betancourt, C</au><au>Betti, F</au><au>Bettler, M O</au><au>van Beuzekom, M</au><au>Bezshyiko, Ia</au><au>Bifani, S</au><au>Billoir, P</au><au>Birnkraut, A</au><au>Bizzeti, A</au><au>Bjørn, M</au><au>Blake, T</au><au>Blanc, F</au><au>Blusk, S</au><au>Bocci, V</au><au>Boettcher, T</au><au>Bondar, A</au><au>Bondar, N</au><au>Bordyuzhin, I</au><au>Borghi, S</au><au>Borisyak, M</au><au>Borsato, M</au><au>Bossu, F</au><au>Boubdir, M</au><au>Bowcock, T J V</au><au>Bowen, E</au><au>Bozzi, C</au><au>Braun, S</au><au>Brodzicka, J</au><au>Brundu, D</au><au>Buchanan, E</au><au>Burr, C</au><au>Bursche, A</au><aucorp>LHCb Collaboration</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Studies of the resonance structure in D 0 → K ∓ π ± π ± π ∓ decays</atitle><jtitle>The European physical journal. C, Particles and fields</jtitle><addtitle>Eur Phys J C Part Fields</addtitle><date>2018</date><risdate>2018</risdate><volume>78</volume><issue>6</issue><spage>443</spage><epage>31</epage><pages>443-31</pages><issn>1434-6044</issn><eissn>1434-6052</eissn><abstract>Amplitude models are constructed to describe the resonance structure of and decays using collision data collected at centre-of-mass energies of 7 and 8 TeV with the LHCb experiment, corresponding to an integrated luminosity of 3.0  . The largest contributions to both decay amplitudes are found to come from axial resonances, with decay modes and being prominent in and , respectively. Precise measurements of the lineshape parameters and couplings of the , and resonances are made, and a quasi model-independent study of the resonance is performed. The coherence factor of the decays is calculated from the amplitude models to be , which is consistent with direct measurements. These models will be useful in future measurements of the unitary-triangle angle and studies of charm mixing and violation.</abstract><cop>France</cop><pub>Springer Nature B.V</pub><pmid>30956546</pmid><doi>10.1140/epjc/s10052-018-5758-4</doi><tpages>31</tpages><oa>free_for_read</oa></addata></record>
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subjects Couplings
CP violation
Decay
Large Hadron Collider
Luminosity
title Studies of the resonance structure in D 0 → K ∓ π ± π ± π ∓ decays
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