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Nuclear Theory at Institut de Physique Nucl

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6/10/09. Beijing-2. 2. Nuclear Theory at Institut de Physique Nucl aire, Orsay ... 43% enrolled in general education courses and 57% in professional training courses. ... – PowerPoint PPT presentation

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Title: Nuclear Theory at Institut de Physique Nucl


1
Nuclear Theory at Institut de Physique Nucléaire,
Orsay
2
University Paris-Sud (Paris-XI)
  • The StudentsNearly 30,000 students - 43
    enrolled in general education courses and 57 in
    professional training courses. - 5,700 are
    following DUT, Professional degrees, IUP, MST,
    DESS, Masters degrees and engineering courses.
    - 3,100 enrolled in one of the 19 PhD schools, 16
    of which are in the heart of the Université
    Paris-Sud 11 - 3,200 are foreign students from
    130 different countries - 3,200 are carrying out
    internships as part of continuous education
    programmes or apprenticeships..The Staff -
    1,800 teaching staff, 1,200 research scientists
    - 1,300 engineers, technicians, administrative
    staff and maintenance staff - 900 technical and
    administrative staff of the national research
    organisations CNRS, INSERM, INRA, CEA - 81
    library staff

3
  • A large budgetAnnual consolidated budget of 450
    million Euros 81 million Euros as part of a
    four-year development contract (2002-2005) 11
    million Euros of research contracts 2,5 million
    Euros of apprenticeship tax 8 million Euros for
    adult education

4
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5
The Orsay campus
  • 25 km S-W of Paris
  • 25 mn by train or motorway
  • Area of more than 2 square kilometers
  • Science and Technology campus biology,
    chemistry, electronics, computer science,
    mechanics, mathematics, physics, Earth sciences,
    sports
  • 13,000 enrolled students including 2,100 PhDs,
    1,700 faculty and research staff, 60 institutes
    and labs.

6
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7
The Theory Group
  • 17 permanent staff (faculty and CNRS researchers)
  • 4 PhD students (very small number)
  • Steady flux of visitors
  • 2 main fields of research
  • - Particle physics and field theory
  • - Nuclear structure and fermionic systems

8
Particle physics and field theory
  • Effective field theory
  • Chiral perturbation theory
  • Low energy QCD
  • Symmetry breaking
  • Variational methods in field theory
  • Relativistic spectroscopy
  • Quantum Hall effect, Chern-Simons theory

9
Nuclear structure and fermionic systems
  • Non-relativistic mean field methods
    Hartree-Fock-Bogoliubov and quasiparticle RPA
  • Relativistic mean field methods relativistic
    Hartree-Fock (RHF) relativistic RPA (RRPA)
  • Unstable nuclei ground states and excitations.
  • Large amplitude collective motion by GCM
  • Structure and reactions involving halo nuclei
  • Trapped fermionic atoms
  • Structure and reactions in inner crust of neutron
    stars
  • Neutrino interaction with nuclei and matter
  • Self-consistent RPA and Renormalized RPA

10
1. Pairing correlations in nuclear ground states
The Hartree-Fock-Bogoliubov Equations
11
Hartree-Fock field and pairing field
12
Quasiparticle continuum
13
Treatment of quasiparticle continuum
14
illustration Ni isotopes
15
The generalized Bethe-Salpeter equation for QRPA
Greens Function
2. Pairing correlations in excited states
16
External field and Strength distribution
17
2 states in 120Sn, with smearing
18
3. Inner crust of neutron stars
E. Khan, N. Sandulescu Nguyen Van Giai
19
Elementary cells
Wigner-Seitz cell
Elementary cell
Lattice
20
Density in the Wigner-Seitz Cells
N.Sandulescu, Nguyen Van Giai,R.J.Liotta,
Phys.Rev.C69(2004)045802
21
Pairing Field in the Wigner-Seitz Cells
N.Sandulescu, Phys.Rev.C70 (2004) 025801
22
Supergiant resonances in Wigner-Seitz cell
L1
Z50 N1750
L0
Effect on specific heat
E.Khan,N.Sandulescu,Nguyen Van Giai, Phys.Rev.C
71,042801 (R) (2005)
23
4. Connection between Extended Brueckner-HF and
Skyrme force
Can one relate Skyrme force to a nuclear matter
microscopic theory?
  • Density Matrix Expansion (DME) method of
    Negele-Vautherin (1972)
  • From Brueckner Theory to Skyrme Energy
    Functional, L.G. Cao, U. Lombardo, C.W. Shen, NVG
    (2005)
  • fit of EBHF results in nuclear matter to
    determine the force parameters.

24
Effective Masses
25
Skyrme parameters from EBHF
26
Finite Nuclei
  • Density profiles
  • Energies and Radii

27
Other works in collaboration with Asia-Link
partners
  • Neutrino mean free path in matter with
    Catania, Lanzhou, CIAE Beijing.
  • Relativistic RPA (RRPA) with CIAE Beijing.
    Response functions in nuclei, calculated in
    momentum space.
  • Relativistic Hartree-Fock (RHF) with PKU (see
    presentation of Wenhui Long). Near future
    RHF-RRPA.

28
The contribution to Asia-Link from this research
program
  • In the next 6 months, the Orsay Theory group will
    host
  • 1 Master student from CIAE Beijing
  • 1 PhD student from INST Hanoi
  • 1 PhD student from Peking University
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