355
Index
Perturbation theory, 265
Phase space, 41
Photon, 123
Picht’s reduced ray, 55
Planck’s constant, 123, 190
Plural scattering, 281
Point spread function, 212
Quantum mechanical particle
motion in field-free space,
139
Reduced mass, 248, 257
Richardson–Dushman law, 308
Rutherford scattering, 252
Scattering amplitude, 257
Scattering cross section, 248
Schr¨ odinger’s equation, 129, 164,
166
Seidel series, 75
Sommerfeld, 191
Space charge, 63
Space charge limited emission of
electrons, 327
Space current, 63
State function, 135, 144
State vector, 135
Stochastic Coulomb interaction,
63
Stochastic Coulomb scattering,
94
Thermionic emission, 304
Thin lens, 200
Total scattering cross section,
264
Tunneling, 309, 310
Tunneling probability, 317
Wave front aberration function,
222
Wave function, 124, 162, 188
Wave packet, 149
Wave vector, 141
WKB approximation, 172
Work function, 308
Wronskian determinant, 60
Zernike polynomials, 224
Index
Perturbation theory, 265
Phase space, 41
Photon, 123
Picht’s reduced ray, 55
Planck’s constant, 123, 190
Plural scattering, 281
Point spread function, 212
Quantum mechanical particle
motion in field-free space,
139
Reduced mass, 248, 257
Richardson–Dushman law, 308
Rutherford scattering, 252
Scattering amplitude, 257
Scattering cross section, 248
Schr¨ odinger’s equation, 129, 164,
166
Seidel series, 75
Sommerfeld, 191
Space charge, 63
Space charge limited emission of
electrons, 327
Space current, 63
State function, 135, 144
State vector, 135
Stochastic Coulomb interaction,
63
Stochastic Coulomb scattering,
94
Thermionic emission, 304
Thin lens, 200
Total scattering cross section,
264
Tunneling, 309, 310
Tunneling probability, 317
Wave front aberration function,
222
Wave function, 124, 162, 188
Wave packet, 149
Wave vector, 141
WKB approximation, 172
Work function, 308
Wronskian determinant, 60
Zernike polynomials, 224
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