Double Beta Decay in SNO+ Huaizhang Deng University of Pennsylvania.

Slides:



Advertisements
Similar presentations
Proposal to join NEMO-3  decay experiment P. Adamson, R. Saakyan, J. Thomas UCL 27 January 2003.
Advertisements

Double Beta Decay review
The SNO+ Experiment: Overview and Status
Analysis of the Optical Properties of Organic Liquid Scintillator in LENA DPG-Tagung in Heidelberg M. Wurm, T. Marrodán Undagoitia, F. v. Feilitzsch,
Double Beta Decay Neodymium, a rare earth element, will be added to the liquid scintillator in SNO+ (at 0.1% by weight). This will enable a search for.
March 12, 2005Benasque Neutrinos Theory Neutrinos Theory Carlos Pena Garay IAS, Princeton ~
Prototype of the Daya Bay Neutrino Detector Wang Zhimin IHEP, Daya Bay.
 decay and neutrino mass 35 isotopes in nature …and Mixing Neutrino Mass.. Imperial College/RAL Nottingham Nov 17 ’04 Dave Wark.
Double Beta Decay review
GERDA: GERmanium Detector Array
Neutrino Mass and Mixing David Sinclair Carleton University PIC2004.
CENBG, University Bordeaux 1 CNRS/IN2P3
DBD matrix elements Welcome and aim of the workshop Experimental situation Outcome.
-Nucleus Interactions Double-beta Decay and Cristina VOLPE Institut de Physique Nucléaire Orsay, France.
Queen’s University, Kingston, ON, Canada
From CUORICINO to CUORE: To probe the inverted hierarchy region On behalf of the CUORE collaboration DUSL Meeting, Washington DC November 2,-4, 2007 Frank.
No s is good s Sheffield Physoc 21/04/2005 Jeanne Wilson A historical introduction to neutrinoless double beta decay.
XXIV WWND South Padre, TX, April 08 W. Bauer Slide 1 Double  Decays, DUSEL, and the Standard Model Wolfgang Bauer Michigan State University.
Double Beta Decay With 20-ton Metal Loaded Scintillators A Detector for DUSEL? Frank Calaprice Princeton University Aldo Ianni LNGS.
COBRA Double Beta Decay Experiment D.Y. Stewart, Dr. Y.A. Ramachers, Prof. P.F.Harrison Experimental Particle Physics Group University of Warwick What.
ILIAS-N4 Search on Double Beta decay -Coordination of double beta decay searches -Bank of pure isotopes -Negociations with Russian labs -Theoretical developments.
Double beta decay Ruben Saakyan UCL 25 March 2004.
Double Beta Decay Present and Future
Full EXO in Cryopit Cryopit Workshop August 2011 David Sinclair.
SNO+: SNO with Liquid Scintillator SNOLAB Workshop IV August 15, 2005 Mark Chen Queen’s University.
NEMO-3  experiment First Results and Future Prospects Ruben Saakyan, UCL UK HEP Neutrino Forum The Cosener’s House, Abingdon.
NEMO-3 Double Beta Decay Experiment: Last Results A.S. Barabash ITEP, Moscow (On behalf of the NEMO Collaboration)
Development of A Scintillation Simulation for Carleton EXO Project Rick Ueno Under supervision of Dr. Kevin Graham.
Status of R&D of the SuperNEMO experiment Gwénaëlle Broudin-Bay LAL Orsay GDR neutrino – Bordeaux – Oct
Results from Sudbury Neutrino Observatory Huaizhang Deng University of Pennsylvania.
2004/Dec/12 Low Radioactivity in CANDLES T. Kishimoto Osaka Univ.
SNO+ Mark Chen Queen’s University. Queen’s M. Chen, M. Boulay, X. Dai, E. Guillian, A. Hallin, P. Harvey, C. Hearns, C. Kraus, C. Lan, A. McDonald, V.
SNO+: A detector for neutrinoless double beta decay, low energy solar neutrinos, and geo- neutrinos. Aksel Hallin June 13,
9-June-2003NDM2003 M. Nomachi M. Nomachi OSAKA University and MOON collaboration MOON (Mo Observatory Of Neutrinos) for double beta decay Photo by
Context: astroparticle physics, non-accelerator physics, low energy physics, natural sources physics, let’s-understand-the-Universe physics mainly looking.
SNO Liquid Scintillator Project NOW September 2004 Mark Chen Queen’s University & The Canadian Institute for Advanced Research.
M. Wójcik for the GERDA Collaboration Institute of Physics, Jagellonian University Epiphany 2006, Kraków, Poland, 6-7 January 2006.
Neutrinoless double-beta decay and the SuperNEMO project. Darren Price University of Manchester 24 November, 2004.
Double Beta Decay Spectroscopy and Neutrino mass sensitivities Hiro Ejiri*, T. Shima RCNP Osaka Univ. *NIRS & CTU, Praha For the MOON collaboration Sendai.
Nd double beta decay search with SNO+ K. Zuber, on behalf of the SNO+ collaboration.
M. Wójcik Instytut Fizyki, Uniwersytet Jagielloński Instytut Fizyki Doświadczalnej, Uniwersytet Warszawski Warszawa, 10 Marca 2006.
IOP HEPP Matthew Kauer Double beta decay of Zr96 using NEMO- 3 and calorimeter R&D for SuperNEMO IOP HEPP April Matthew Kauer UCL London.
NEMO3 analysis and SuperNEMO development Benjamin Richards D14.
Compared sensitivities of next generation DBD experiments IDEA - Zaragoza meeting – 7-8 November 2005 C. Augier presented by X. Sarazin LAL – Orsay – CNRS/IN2P3.
Reactor neutrinos, double beta and beta decays Experimental review Fabrice Piquemal Laboratoire Souterrain de Modane (CNRS/IN2P3 and CEA/IRFU) and Centre.
DOUBLE BETA DECAY TO THE EXCITED STATES (EXPERIMENTAL REVIEW) A.S. BARABASH ITEP, MOSCOW.
28 May 2008NEMO-3 Neutrino081 NEMO-3 A search for double beta decay Robert L. Flack University College London On behalf of the NEMO-3 collaboration.
May 19, 2005UAM-IFT, Madrid : Neutrino physics in underground labs Carlos Pena Garay IAS ~
NEMO3 experiment: results G. Broudin-Bay LAL (CNRS/ Université Paris-Sud 11) for the NEMO collaboration Moriond EW conference La Thuile, March 2008.
Activities on double beta decay search experiments in Korea 1.Yangyang Underground laboratory 2.Double beta decay search with HPGe & CsI(Tl) 3.Metal Loaded.
Double Beta Decay Experiments Jeanne Wilson University of Sussex 29/06/05, RAL.
1 Study of 48 Ca Double Beta Decay by CANDLES T. Kishimoto Osaka Univ.
Proposal to join NEMO-3  decay experiment P. Adamson, R. Saakyan, J. Thomas UCL 27 January 2003.
Neutrino Pre-Town Meeting This is a town meeting: make your voice heard!
1 Double Beta Decay of 150 Nd in the NEMO 3 Experiment Nasim Fatemi-Ghomi (On behalf of the NEMO 3 collaboration) The University of Manchester IOP HEPP.
OMC rates in different nuclei related to 2β-decay. K.Ya. Gromov, D.R. Zinatulina, C. Briançon, V.G. Egorov, A.V. Klinskih, R.V. Vasiliev, M.V.Shirchenko,I.
DPF-JPS 2006 Oct 31, Hawaii 1 CANDLES system for the study of 48-Ca double beta decay T. Kishimoto Osaka Univ.
Scintillating Bolometers – Rejection of background due to standard two-neutrino double beta decay D.M. Chernyak 1,2, F.A. Danevich 2, A. Giuliani 1, M.
Search for Neutrinoless Double Beta Decay with NEMO-3 Zornitza Daraktchieva University College London On behalf of the NEMO3 collaboration PANIC08, Eilat,
The NEMO3 Double Beta Decay Experiment Ruben Saakyan IoP meeting on Double Beta Decay Manchester 21 November 2007.
0νDBD Experimental Review and 136 Xe With HP Gas at CJPL 季向 东.
Yuri Shitov Imperial College London On behalf of the NEMO Collaboration A search for neutrinoless double beta decay: from NEMO-3 to SuperNEMO Moriond EW.
Search for Neutrinoless Double-Beta Decay Werner Tornow Duke University & Triangle Universities Nuclear Laboratory (TUNL) & Kavli-Tokyo Institute of the.
Aksel Hallin NNN08, Paris September 12, 2008
The COBRA Experiment: Future Prospects
Fakultät Mathematik und Naturwissenschaften, Institut für Kern- und Teilchenphysik Various new measurements related to DBD Kai Zuber.
Double Beta Decay Experiment with CaMoO4 crystal
Status of 100Mo based DBD experiment
XAX Can DM and DBD detectors combined?
Status of the Nd-150 enrichment project
Presentation transcript:

Double Beta Decay in SNO+ Huaizhang Deng University of Pennsylvania

Brookhaven National Laboratory: R. Hahn, M. Yeh, Y. Williamson, A. Garnov Carleton University: K. Graham Idaho State University: K. Keeter, J. Popp, E. Tatar Laurentian University: D. Hallman, C. Virtue, A. Labelle LIP Lisbon: S. Andringa, N. Barros, J. Maneira Queen's University: M. Boulay, M. Chen, X. Dai, E. Guillian, P. Harvey, C. Kraus, C. Lan, A. McDonald, S. Quirk, P. Skensved, V. Novikov, A. Wright, A. Chia, M. Gobien, J. Lau SNOLAB: B. Cleveland, F. Duncan, R. Ford, N. Gagnon, J. Heise, C. Jillings, I. Lawson Technical University of Munich: F. v. Feilitzsch, L. Oberauer University of Alberta: A. Hallin, C. Krauss University of Pennsylvania: G. Beier, H. Deng, B. Heintzelman, J. Secrest, T. Shokair University of Sussex: K. Zuber University of Texas at Austin: J. Klein Collaboration

Outline  150 Nd double beta decay  The SNO+ detector  150 Nd loaded scintillator in SNO+ detector  The sensitivity of SNO+ to m  Comparison with other experiments  Conclusions

Double Beta Decay 1.Neutrinos are Majorana particles (Z+2, N-2) (Z, N) 2.Neutrinos have masses Candidates: 48 Ca, 76 Ge, 82 Se, 100 Mo, 130 Te 136 Xe, 150 Nd …

Neodymium Nd 150 Nd  150 Sm + 2e + 2  = 2.9x10 19 year 28% 0% 14% 150 Nd  150 Sm + 2e Q = 3.37 MeV  = ? year 5.6% Isotope 48 Ca 76 Ge 82 Se 100 Mo 116 Cd 130 Te 136 Xe 150 Nd T 1/2 (x y) F. Avignone, Nucl. Phys. B (proc. Suppl) 143 (2005) m  =40 meV V.A. Rodin et al., Nucl. Phys. A 766, 107 (2006) m  =50 meV

2092 meters deep underground 1000 tons of ultrapure D 2 O in a 12 meter diameter acrylic vessel 7000 tons of ultrapure H 2 O as shield 9500 PMTs mounted on a 18 meter diameter frame electronics, DAQ, understanding of our detector A l r e a d y E x i s t s ! Sudbury Neutrinoless Observatory (SNO+) 1000 tons of ultrapure liquid scintillator in a 12 meter diameter acrylic vessel Sudbury Neutrino Observatory (SNO)

SNOLab SNO+

Scintillator in SNO+ compatible with acrylic, undiluted high light yield (because it’s undiluted) Pure, light attenuation length in excess of 20 m at 420 nm high flash point (130°C) safe low toxicity safe low cost (relative to other organic solvents) smallest scattering of all scintillating solvents investigated Petresa Canada plant in Quebec makes 120 kton/year, $1600 per ton delivered.

LAB and Fluor works fine with standard fluors –PPO, butyl-PBD, PPD –2 g/L concentration works fine PPO [g/L] Method 1Method 2 32n/a90.7% 480% 272%73% 160%61% 0.546%55% %47% 0.123%n/a %n/a LAB-PPO energy transfer efficiency Method 1 (fluorescence emission method): measure the fluorescence excitation and emission of PPO-LAB solution; excitation at 318nm (LAB excitation), integrate emission range from 320 to 550nm (PPO emission) Method 2 (decay time method): excitation at 250nm, emission 360nm, measure the decay times of PPO-LAB solution, compare to the decay time of pure PPO

Light Yield

Attenuation preliminary measurement

Decay Times of Scintillations

Nd Loaded LAB

Other Studies + Acrylic vessel holding structure + Long time stability of Nd loaded LAB with acrylic + Optics of Nd loaded LAB + Upgrade of electronic system + Modification of software packages, Monte Carlo

Energy Spectrum in SNO+

Extract Number of 0  Events

Discovery Potential five sigma discovery 3 sigma indication

Comparison ExperimentIsotope Enriched isotope mass (kg) T 1/2 (yr) (eV)StartStatus CUORE 130 Te *2011Funded GERDA phase I phase II 76 Ge – 0.5* 0.07 – 0.2* Funded Majorana 76 Ge – 0.3*2011Funded EXO Xe *2008Funded SuperNEMO 82 Se 150 Nd * R&D CANDLES 48 Ca0.5~ Funded MOON II 100 Mo – 0.13?R&D DCBA 150 Nd20?R&D SNO+ 150 Nd ~ R&D COBRA 116Cd, 130 Te 420 R&D Fabrice Piquemal, Lepton Photon 2007 Calculation with NME from Rodim et al., Suhonen et al., Caurier et al. PMN07

Conclusions  The 150 Nd is a good candidate for 0  decay due to large Q and favorable nuclear matrix element  The Nd can be dissolved into SNO+ liquid scintillator with long term stability and good optics.  The large statistics compensate the relatively poor energy resolution in SNO+. The sensitivity to neutrino mass is comparable with other experiments  The SNO detector has been built. We could start SNO+ soon.