Index
207
electric quadrupole, 84
orbital momentum, 89
spin momentum, 89
transition, 84
Orbital moment, 177, 184
P
Parity, 85
even, 166
odd, 166
Pauli
depairing, 180, 181
matrices, 168
Perpendicular Magnetic Anisotropy (PMA),
148
Photoelectron
Emission
Microscopy
(PEEM), 149
Photoemission
angle-resolved (ARPES), 74
one-step model, 75
spectroscopy (PES), 63, 74
sudden approximation, 75
three-step model, 74
Photoemission Spectroscopy (PES)
angle-resolved (ARPES), 152
Plane Waves (PW), 87
Polarized light, 21, 69, 100, 101, 105, 108,
111, 124
p-orbitals, 58
Potential energy, 40
Projector Augmented Wave (PAW), 87
Propagator, 84
p-wave, 166, 179, 182, 189, 190
Q
Quantization, 181
axis, 167, 168, 173–176, 201
Quantum excitation, 10
Quanty, 96
R
Racah parameters, 88
Radiation
damping, 10
equilibrium, 10
Relativistic mass, 5
RKKY interaction, 44
Röntgen W., 1
S
Scanning Transmission X-ray Microscopy
(STXM), 155
Schrödinger
equation, 88
Hamiltonian, 88
Selection rules, 68
Self-Amplified Spontaneous Emission
(SASE), 27, 30
Self-energy, 76
Single-particle approximation, 86
Singlet, 42, 166, 178, 187
Skyrmion, 157
Slater
determinant, 65, 87
integrals, 92
Space inversion symmetry, 85
Spectral flux, 8
Spherical
symmetry, 117
tensor, 98
Spin asymmetry, 132
Spin chain, 50
Spin-charge conversion, 152
Spin–orbit, 179, 180
coupling, 88, 179–181, 186, 188, 195,
198
Hamiltonian, 88–90
interaction, 57, 166, 179, 184, 185, 188
Spin polarization, 138
Spin-Transfer Torque (STT), 141
Spin wave, 51
Sr 2 RuO 4 , 186, 189, 190
Storage-ring energy, 16
Superbends, 17
Superexchange, 45
Superfluid density, 171, 175
Superfluid 3 He, 166, 179, 182, 184–189,
193, 198
s-wave, 175
Synchrotron radiation, 5
Synchrotrons
overview, 3
photon energies at, 3
radio-frequency power supply, 9
storage-ring energy, 3
T
Tanabe–Sugano diagrams, 88
Term
spectroscopic, 88
symbols, 88
207
electric quadrupole, 84
orbital momentum, 89
spin momentum, 89
transition, 84
Orbital moment, 177, 184
P
Parity, 85
even, 166
odd, 166
Pauli
depairing, 180, 181
matrices, 168
Perpendicular Magnetic Anisotropy (PMA),
148
Photoelectron
Emission
Microscopy
(PEEM), 149
Photoemission
angle-resolved (ARPES), 74
one-step model, 75
spectroscopy (PES), 63, 74
sudden approximation, 75
three-step model, 74
Photoemission Spectroscopy (PES)
angle-resolved (ARPES), 152
Plane Waves (PW), 87
Polarized light, 21, 69, 100, 101, 105, 108,
111, 124
p-orbitals, 58
Potential energy, 40
Projector Augmented Wave (PAW), 87
Propagator, 84
p-wave, 166, 179, 182, 189, 190
Q
Quantization, 181
axis, 167, 168, 173–176, 201
Quantum excitation, 10
Quanty, 96
R
Racah parameters, 88
Radiation
damping, 10
equilibrium, 10
Relativistic mass, 5
RKKY interaction, 44
Röntgen W., 1
S
Scanning Transmission X-ray Microscopy
(STXM), 155
Schrödinger
equation, 88
Hamiltonian, 88
Selection rules, 68
Self-Amplified Spontaneous Emission
(SASE), 27, 30
Self-energy, 76
Single-particle approximation, 86
Singlet, 42, 166, 178, 187
Skyrmion, 157
Slater
determinant, 65, 87
integrals, 92
Space inversion symmetry, 85
Spectral flux, 8
Spherical
symmetry, 117
tensor, 98
Spin asymmetry, 132
Spin chain, 50
Spin-charge conversion, 152
Spin–orbit, 179, 180
coupling, 88, 179–181, 186, 188, 195,
198
Hamiltonian, 88–90
interaction, 57, 166, 179, 184, 185, 188
Spin polarization, 138
Spin-Transfer Torque (STT), 141
Spin wave, 51
Sr 2 RuO 4 , 186, 189, 190
Storage-ring energy, 16
Superbends, 17
Superexchange, 45
Superfluid density, 171, 175
Superfluid 3 He, 166, 179, 182, 184–189,
193, 198
s-wave, 175
Synchrotron radiation, 5
Synchrotrons
overview, 3
photon energies at, 3
radio-frequency power supply, 9
storage-ring energy, 3
T
Tanabe–Sugano diagrams, 88
Term
spectroscopic, 88
symbols, 88
