## Frontiera E Confini Della Fisica Di Molte ParticelleR. A. Broglia, John Robert Schrieffer, Società italiana di fisica Subjects at the forefront of many-particle research, like high-temperature superconductivity, the quantum Hall effect, heavy fermions, tunneling of quantal systems with many degrees of freedom, Monte Carlo calculations on a lattice etc., were presented. The meeting was well timed as it coincided with a very active period of research in the study of superconductivity and thus provided an excellent opportunity to assess some of the major developments that have taken place in the last years. |

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Page 27

R. A. Broglia, John Robert Schrieffer, Società italiana di fisica. which, by

exchanging a spinon, gives an

46). This gap energy is unrelated to the basic superconductivity mechanism,

need not be ...

R. A. Broglia, John Robert Schrieffer, Società italiana di fisica. which, by

exchanging a spinon, gives an

**electron**anomalous self-energy as shown in fig.46). This gap energy is unrelated to the basic superconductivity mechanism,

need not be ...

Page 31

We assign the unperturbed kinetic energy ek— fi to the

perhaps somewhat optimistic expectation that we will take the interactions into

account separately. The chemical potential must be adjusted to give the correct ...

We assign the unperturbed kinetic energy ek— fi to the

**electron**excitations, in theperhaps somewhat optimistic expectation that we will take the interactions into

account separately. The chemical potential must be adjusted to give the correct ...

Page 354

Nonrelativistically, neither

renormalize the mass m from the bare-

same as we gave in the nuclear case; if we neglect relativistic effects, e.g. the

difference ...

Nonrelativistically, neither

**electron**-**electron**interactions nor lattice effectsrenormalize the mass m from the bare-

**electron**mass m. The argument is thesame as we gave in the nuclear case; if we neglect relativistic effects, e.g. the

difference ...

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### Contents

insula | 1 |

EVB theory such as it is | 14 |

Formal theories of EVB and highT0 superconductivity | 20 |

Copyright | |

21 other sections not shown

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### Common terms and phrases

amplitude angular momentum approximation band barrier behavior calculated charge classical configuration correlation Coulomb coupling cross-section defined deformation degrees of freedom density described dipole discussed dynamics edited effect eigenstates electron equation of motion excitation energy exciton expectation value experimental factor Fermi energy Fermi liquid Fermi surface fermion finite fluctuations gauge given Green's function Gutzwiller Hamiltonian Hartree heavy-ion hole Hubbard model inertia interaction Landau lattice Laughlin Lett limit linear magnetic field mass matrix element mean-field Monte Carlo neutrons nuclear nucleon nucleus obtained orbital oscillator P. W. ANDERSON pairing parameter particle path integral phase Phys physics potential problem quadrupole quantity quantum quasi-particle R. A. BROGLIA relativistic renormalized resonance rotational frequency sect shown in fig simulation single-particle spin spinon superconductivity symmetry temperature term theory tion tonian transition tunnelling variable vector wave function yrast zero