## Proceedings of the International School of Physics "Enrico Fermi.", Volume 70N. Zanichelli, 1978 - Nuclear physics |

### From inside the book

Results 1-3 of 73

Page 380

Similarly, a negative ellipticity

plane and a right-handed helix in three dimensions. Ellipticities of + 1 and — 1

...

Similarly, a negative ellipticity

**corresponds**to clockwise motion of the tip in theplane and a right-handed helix in three dimensions. Ellipticities of + 1 and — 1

**correspond**to left and right circularly polarized light. An ellipticity of 0 designates...

Page 381

... projections on analyzers A and A, as the polarization P. b) Conversely, every

point on the sphere

points at opposite ends of a diameter,

states.

... projections on analyzers A and A, as the polarization P. b) Conversely, every

point on the sphere

**corresponds**to a polarization State. c) Antipodal points,points at opposite ends of a diameter,

**correspond**to orthogonal polarizationstates.

Page 509

The optical spectra have been used to analyse the distribution and concentration

of Co°t and Coot in YIG [9, 23]. STURGE et al. [9] used the oscillator strengths of

the absorption band

The optical spectra have been used to analyse the distribution and concentration

of Co°t and Coot in YIG [9, 23]. STURGE et al. [9] used the oscillator strengths of

the absorption band

**corresponding**to the "E-> *T, transition for Co” and that ...### What people are saying - Write a review

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### Contents

Gruppo fotografico dei partecipanti al Corso fuori testo | 1 |

Octahedral sites | 3 |

Hightemperature results | 4 |

Copyright | |

34 other sections not shown

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### Common terms and phrases

absorption angle anisotropy constants anisotropy energy annealing antiferromagnetic Appl axis Bloch lines Bloch point Bloch wall Bloch-line bubble calculated coefficients compensation point contribution Cošt crystal field cubic Curie temperature curve d-site diamagnetic dichroism direction of magnetization domain wall effects electron energy levels equation exchange experimental Fe2+ Fe3+ ions ferromagnetic resonance formula unit frequency gadolinium Gd3+ ion GELLER GILLEo given Hamiltonian interaction ion moments Journ lattice constant line width linear magnetic field magnetic ions magnetoelastic magnetostriction constants measurements neutron diffraction observed octahedral octahedral sites orientation parameter phonons photoinduced photomagnetic Phys plane polarization rare-earth ions rare-earth iron garnets relaxation respectively room temperature rotation sample shown in fig specimens spin wave spontaneous magnetization sublattice substitution symmetry temperature dependence temperature variation tetrahedral theory tion torque transition uniaxial anisotropy valence values vector velocity yttrium iron garnet