6533b821fe1ef96bd127c31e
RESEARCH PRODUCT
The mass-hierarchy and CP-violation discovery reach of the LBNO long-baseline neutrino experiment.
K. NikolicsS. NaritaD. DuchesneauJ. LagodaJ.v. DawsonS. StoicaP. N. RatoffV. A. MatveevV. A. MatveevI.m. BrancusB. StillMarco CalvianiIlias EfthymiopoulosI. BandacO. BésidaNinetta SavianoNinetta SavianoT. ViantMario CampanelliK. MavrokoridisO. CarettaA. MercadanteR. SteerenbergJukka MaalampiM. G. CatanesiD. AutieroS. Di LuiseK. NguyenSigve HaugChristopher WiebuschC. Martin-mariA.m. Blebea-apostuV. GalymovM. A.m. RaynerAndré RubbiaS. EmeryE. ScantamburloT. HasegawaK. K. LooF. Di LodovicoOleg MineevN. J. C. SpoonerIonel LazanuY. A. GornushkinP. BallettYu. G. KudenkoYu. G. KudenkoYu. G. KudenkoJ. SarkamoS. WuM. RavonelJ. ZalipskaM. ZitoKimmo KainulainenA. TonazzoM. M. KhabibullinA. VorobyevA. N. ErykalovL. EpprechtA. OprimaL. MagalettiC. GigantiF. SergiampietriE. PennacchioKari RummukainenE. ShaposhnikovaA. SaftoiuJouni SuhonenI. KresloD. StancaG. ChristodoulouJ. IlicV. A. KudryavtsevBrennan GoddardA. BravarTimo EnqvistH. PessardL. PerialePaul E. SterianKalevi MursulaJ. De JongR. AsfandiyarovP. GorodetzkyAndreea Rodica SterianE. MazzucatoJ. DumarchezR. SaccoE. RondioA. EliseevA. DelbartJ. OdellJ. J. GomezM. FittonKimmo TuominenG. Vankova-kirilovaM. PectuN. MccauleyD. KrynRomul MargineanuH. M. O'keeffeT. KalliokoskiAlexander FinchJ. MarteauF. BayB. MitricaEnrico BorrielloF. SatoFanouria AntoniouP. PrzewlockiG.d. BarrYu. N. NovikovM. SlupeckiD. SgalabernaS. MurphyE. RadicioniYannis PapaphilippouS. B. BoydR. P. LitchfieldA. GendottiAra IoannisianB. A. PopovB. A. PopovAnatoly KopylovLester D.r. ThompsonOana RisteaD. ChesneanuS. HorikawaHelmut VinckePasi KuusiniemiM. MurdochB. AndrieuAlessandro MirizziM. SorelWladyslaw Henryk TrzaskaM. QuintoL. ChaussardM. ValramMarc WeberY. DeclaisP. LoveridgeGenady GavrilovF. ChipesiuR. TerriF. VanucciSilvia PascoliM. SzeptyckaGareth J. BarkerV. PalladinoPaolo CrivelliT. DavenneAlexandru JipaM. HierholzerC. TouramanisG. TomaKari EnqvistT. PatzakT. PatzakAntonio EreditatoN. YershovJ. KumpulainenA. KorzenevS. KosyanenkoJ. P. ColemanThomas StraussY. A. RamachersF. ResnatiC. DenshamM. D. HaighA. IzmaylovT. EsanuAkitaka ArigaA. C. WeberA. C. WeberD. AngusA. N. KhotjantsevR. TsenovA. CerveraY. KaradzhovIain Alexander BertramJ. HissaM. BogomilovSanjukta ChakrabortyKatri HuituAchim StahlP. Del Amo SanchezC. CantiniN. GrantJ.-m. LévyD. FrancoL. AgostinoD. PayneA. HaeslerV. SuvorovG. Cata-danilVincenzo BerardiSanjib Kumar AgarwallaEtam NoahB. MorganM. CalinTomoko ArigaM. Buizza-avanziniArnaud RobertG. VasseurDmitry NesterenkoA. BlondelP. VeltenClaudia GomoiuJiro KawadaI. De BonisW. BartmannD. L. WarkM. AittolaJ. R. WilsonE. KokkoDebjyoti BanerjeeF. CafagnaKen SakashitaFrancesco VelottiAntonin VacheretA. AlekouAri VirtanenL. L. KormosC. Pistillosubject
Physics::Instrumentation and Detectorsfar detectorkaukoputket ja teleskoopit7. Clean energyviolation [CP]CP violation; Neutrino Detectors and Telescopes; Oscillation; Nuclear and High Energy PhysicsHigh Energy Physics - Phenomenology (hep-ph)Observatorymass: hierarchy [neutrino]detector [neutrino]QCPhysicsTime projection chamberLarge Hadron ColliderOscillationmagnetization [iron]oscillation [neutrino]High Energy Physics - PhenomenologyCP violationliquid argon [time projection chamber]CP violationNeutrinoParticle physicsNuclear and High Energy PhysicsCERN Lab530 PhysicseducationFOS: Physical sciencesddc:500.2oscillation [flavor]114 Physical sciencesNuclear physicsphase spacenear detectorstatistical analysisiron [calorimeter]Particle Physics - PhenomenologyAstroparticle physicsNeutrino Detectors and Telescopesta114Físicaflavor [neutrino]CP [phase]CERN SPSMODELproposed [observatory]Oscillation13. Climate actionPhase space[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph]gas [argon]beam [neutrino]High Energy Physics::ExperimentMATTERneutrino detectorsCP violation.description
The next generation neutrino observatory proposed by the LBNO collaboration will address fundamental questions in particle and astroparticle physics. The experiment consists of a far detector, in its first stage a 20 kt LAr double phase TPC and a magnetised iron calorimeter, situated at 2300 km from CERN and a near detector based on a high-pressure argon gas TPC. The long baseline provides a unique opportunity to study neutrino flavour oscillations over their 1st and 2nd oscillation maxima exploring the $L/E$ behaviour, and distinguishing effects arising from $\delta_{CP}$ and matter. In this paper we have reevaluated the physics potential of this setup for determining the mass hierarchy (MH) and discovering CP-violation (CPV), using a conventional neutrino beam from the CERN SPS with a power of 750 kW. We use conservative assumptions on the knowledge of oscillation parameter priors and systematic uncertainties. The impact of each systematic error and the precision of oscillation prior is shown. We demonstrate that the first stage of LBNO can determine unambiguously the MH to $>5\sigma$C.L. over the whole phase space. We show that the statistical treatment of the experiment is of very high importance, resulting in the conclusion that LBNO has $\sim$ 100% probability to determine the MH in at most 4-5 years of running. Since the knowledge of MH is indispensable to extract $\delta_{CP}$ from the data, the first LBNO phase can convincingly give evidence for CPV on the $3\sigma$C.L. using today's knowledge on oscillation parameters and realistic assumptions on the systematic uncertainties.
year | journal | country | edition | language |
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2014-05-21 |