Experimental determination of isospin mixing in nuclear states;

Slides:



Advertisements
Similar presentations
The role of the isovector monopole state in Coulomb mixing. N.Auerbach TAU and MSU.
Advertisements

First-principles calculations with perturbed angular correlation experiments in MnAs and BaMnO 3 Workshop, November Experiment: IS390.
Photo-Nuclear Physics Experiments by using an Intense Photon Beam Toshiyuki Shizuma Gamma-ray Nondestructive Detection Research Group Japan Atomic Energy.
Spectroscopy at the Particle Threshold H. Lenske 1.
Teresa Kurtukian-Nieto Centre d’Etudes Nucléaires de Bordeaux Gradignan Precision half-life determination of the superallowed 0 + → 0 + β + -emmiters 42.
 asymmetry parameter measurements in nuclear  -decay as a probe for non-Standard Model physics K.U.Leuven, Univ. Bonn, NPI Rez (Prague), ISOLDE CERN.
Degree of polarization of  produced in quasielastic charge current neutrino-nucleus scattering Krzysztof M. Graczyk Jaroslaw Nowak Institute of Theoretical.
P461 - decays II1 Parity Violation in Beta Decays The Parity operator is the mirror image and is NOT conserved in Weak decays (is conserved in EM and strong)
Parity Violation in the  decay of polarized 93 Tc 17/2 - isomers B.S. Nara Singh, M. Hass and G. Goldring Weizmann Institute of Science, ISRAEL D. Ackerman,
Workshop on Physics on Nuclei at Extremes, Tokyo Institute of Technology, Institute for Nuclear Research and Nuclear Energy Bulgarian Academy.
Nuclear Level Densities of Residual Nuclei from evaporation of 64 Cu Moses B. Oginni Ohio University SNP2008 July 9, 2008.
1 TCP06 Parksville 8/5/06 Electron capture branching ratios for the nuclear matrix elements in double-beta decay using TITAN ◆ Nuclear matrix elements.
Nuclear Level Densities Edwards Accelerator Laboratory Steven M. Grimes Ohio University Athens, Ohio.
Spin-isospin studies with the SHARAQ Spectrometer Tomohiro Uesaka & Y. Sasamoto, K. Miki, S. Noji University of Tokyo for the SHARAQ collaboration Aizu2010.
Nuclear Level Density 1.What we know, what we do not know, and what we want to know 2.Experimental techniques to study level densities, what has been done.
 Magnetism and Neutron Scattering: A Killer Application  Magnetism in solids  Bottom Lines on Magnetic Neutron Scattering  Examples Magnetic Neutron.
Dott. Antonio Botrugno Ph.D. course UNIVERSITY OF LECCE (ITALY) DEPARTMENT OF PHYSICS.
Cross-sections of Neutron Threshold Reactions Studied by Activation Method Nuclear Physics Institute, Academy of Sciences of Czech Republic Department.
Nuclear Collective Excitation in a Femi-Liquid Model Bao-Xi SUN Beijing University of Technology KITPC, Beijing.
Status of the miniBETA experiment. Maciej Perkowski KU Leuven: prof. N. Severijns WI group JU Krakow: prof. K. Bodek group.
July 29-30, 2010, Dresden 1 Forbidden Beta Transitions in Neutrinoless Double Beta Decay Kazuo Muto Department of Physics, Tokyo Institute of Technology.
LOMONOSOV MOSCOW STATE UNIVERSITY, SKOBELTSYN INSTITUTE OF NUCLEAR PHYSICS Multi-particle photodisintegration of heavy nuclei A.N. Ermakov, B.S. Ishkhanov,
February 12-15,2003 PROCON 2003, Legnaro-Padova, Italy Jean Charles THOMAS University of Leuven / IKS, Belgium University of Bordeaux I / CENBG, France.
Radiation Shielding Assessment for MuCool Experimental Enclosure C. Johnstone 1), I. Rakhno 2) 1) Fermi National Accelerator Laboratory, Batavia, Illinois.
Antiferromagnetic Resonances and Lattice & Electronic Anisotropy Effects in Detwinned La 2-x Sr x CuO 4 Crystals Crystals: Yoichi Ando & Seiki Komyia Adrian.
KIT – The Research University in the Helmholtz Association INSTITUTE for NEUTRON PHYSICS and REACTOR TECHNOLOGY (INR) Nuclear Data for Calculation.
Study of repulsive nature of optical potential for high energy 12 C+ 12 C elastic scattering (Effect of the tensor and three-body interactions) Gaolong.
Monte Carlo methods in spallation experiments Defense of the phD thesis Mitja Majerle “Phasotron” and “Energy Plus Transmutation” setups (schematic drawings)
PHYS 3446 – Lecture #10 Nuclear Radiation Energy Deposition in Media
PV Electron Scattering
Electromagnetic (gamma) decay
Relativistic Kinematics for the Binding Energy of Nuclear Reactions
Isospin mixing at finite temperature in 80Zr
12th Geant4 Space Users Workshop
Mean free path and transport parameters from Brueckner-Hartree-Fock
Jun Kameda (ICRR) RCCN International workshop at Kashiwa (Dec.10,2004)
Is the caloric curve a robust signal of the phase transition
Open quantum systems.
Kazuo Muto Tokyo Institute of Technology (TokyoTech)
Ch. Stoyanov Two-Phonon Mixed-Symmetry States in the Domain N=52
Hans-Jürgen Wollersheim
Low‐energy precision measurements at the intensity frontier
Tests of fundamental weak interactions
Giant Monopole Resonance
Emmanuel Clément IN2P3/GANIL – Caen France
An isospin-dependent global elastic nucleon-nucleus potential
CHAPTER 12 The Atomic Nucleus
Decay spectroscopy with LaBr3(Ce) detectors at RIKEN and GSI
PHY Precise Measurement of the Internal Conversion Coefficient for the E3 decay from the 111mCd Isomer Laura G. Pineda1,2, N. Nica2, J.C. Hardy2.
Self-consistent theory of stellar electron capture rates
ISOLDE Workshop and Users Meeting 2017
Introduction to Charge Symmetry Breaking
PHL424: γ-decay γ-decay is an electromagnetic process where the nucleus decreases in excitation energy, but does not change proton or neutron numbers This.
Isospin Symmetry test on the semimagic 44Cr
CHEM 312: Lecture 6 Part 2 Gamma Decay
Review: Prospects of detection of relic antineutrinos by resonant absorption in electron capturing nuclei. J D Vergados & Yu N Novikov, J. Phys. G: Nucl.
The Weak Structure of the Nucleon from Muon Capture on 3He
New results on the Be-8 anomaly
Nuclear excitations in relativistic nuclear models
Search for f-N Bound State in Jefferson Lab Hall-B
GEANT Simulations and Track Reconstruction
PHYS 3446 – Lecture #10 Nuclear Radiation Energy Deposition in Media
Theoretical study of the direct
Nuclear Physics PHY
Kazuo MUTO Tokyo Institute of Technology
NEUTRINO INTERACTION WITH NUCLEI
Investigation of 178Hf – K-Isomers
Supernarrow dibarions
PHYS 3446, Spring 2012 Andrew Brandt
Presentation transcript:

Experimental determination of isospin mixing in nuclear states; the cases of 52Mn, 59Cu, 71As and 104gAg e+ ne nucleus q Isospin workshop Paris, April 26-29, 2011 Nathal Severijns Kath. University Leuven, Belgium 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 1. observable and physics content 2. experimental details 3. results 4. discussion 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

1. observable and physics content J  J  + transitions (F component forbidden by isospin selection rule) 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011  p  emission asymmetry parameter : 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 sensitivity 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

2. Experimental details Low Temperature Nuclear Orientation principle : HPGe HPGe Si p-i-n angular distribution : D. Venos et al., NIM A 454 (2000) 403 D. Zákoucký, et al., NIM A 520 (2004) 80 F. Wauters et al., NIM A 604 (2009) 563

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 52Mn - P. Schuurmans et al., Nucl. Phys. A 622 (2000) 89 71As - N. Severijns et al., Phys. Rev. C 71 (2005) 064310 59Cu, 104mAg - V. Golovko, Ph.D. thesis, K.U.Leuven 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

52Mn and 71As beta asymmetry parameter measurements used GEANT4 code to account for: - detection geometry - magnetic field effects - scattering Si p-i-n diode (500 m,  = 9 mm) operating at 10 K Leuven 3He - 4He dilution refrigerator setup 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

59Cu and 104mAg beta asymmetry parameter measurements HPGe NICOLE - ISOLDE on-line 3He - 4He dilution refrigerator setup N. Severijns, 2-5 April 2007, ECT*

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 59Cu  spectra 104mAg 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011  anisotropy - 1 71As 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011  anisotropy - 2 71As 676 - 722 keV 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011  anisotropy - 3 104mAg 1200-1400 keV 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 3. Results G. Colò, M. A. Nagarajan, P. Van Isacker, and A. Vitturi, Phys. Rev. C 52, 1175(R) (1995) admixture of all states with isospin T0+1 into state with isospin T0 : with (E0 – EM) = energy of isovector giant monopole resonance V1  25 MeV = proton-neutron exchange potential E0 = excitation energy of state with isospin T0 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin workshop - Paris - April 26-29, 2011 Conclusions isospin mixing amplitude from analog state was determined for four J  J transitions with isospin T ranging from 1/2 to 5 isospin impurities ranging from about 0.1% to 1% were observed comparison with calculations for total isospin impurity show the analog state contributes about 2% to 10% of the total impurity no calculations for the isospin impurity from the analog state alone are available 1/18/2019 N. Severijns, Isospin workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 + decays based on: S. Raman et al., Atom. Data and Nucl. Data Tabl. 16 (1975) 451 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 - decays based on: S. Raman et al., Atom. Data and Nucl. Data Tabl. 16 (1975) 451 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

N. Severijns, Isospin Workshop - Paris - April 26-29, 2011 distribution in - electron and neutrino directions and in - electron energy from polarized nuclei : Correlation measurements I   Fermi function phase space e+ ne nucleus q - correlation Fierz interference term ( b  0 in standard model ) -asymmetry R-correlation J,D, Jackson, S.B. Treiman, H.W. Wyld, Nucl. Phys. 4 (1957) 206 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011

Geant 4 Aexp (60Co) = - 1.014 (12)stat (16)syst region analysed  Geant 4 (P from anisotropy of -rays ) Analysis of measured and simulated spectra: performance of GEANT simulation code -- F. Wauters, NS et al., submitted to NIM A Aexp (60Co) = - 1.014 (12)stat (16)syst ( ASM = -0.987(9) ) no energy dependence left  corrections OK F. Wauters et al., submitted 1/18/2019 N. Severijns, Isospin Workshop - Paris - April 26-29, 2011