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Principles of Electron Optics, Volume 3

Fundamental Wave Optics

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2022
ISBN13: 9780128189795
Rubricering
Elsevier Science e druk, 2022 9780128189795
€ 265,00
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Samenvatting

Principles of Electron Optic: Volume Three: Wave Optics, discusses this essential topic in microscopy to help readers understand the propagation of electrons from the source to the specimen, and through the latter (and from it) to the image plane of the instrument. In addition, it also explains interference phenomena, notably holography, and informal coherence theory. This third volume accompanies volumes one and two that cover new content on holography and interference, improved and new modes of image formation, aberration corrected imaging, simulation, and measurement, 3D-reconstruction, and more.

The study of such beams forms the subject of electron optics, which divides naturally into geometrical optics where effects due to wavelength are neglected, with wave optics considered.

Specificaties

ISBN13:9780128189795
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>54. Introduction</p> <p>Part XI – Wave Mechanics <br>55. The Schrödinger Equation<br>56. The Relativistic Wave Equation <br>57. The Eikonal Approximation <br>58. Paraxial Wave Optics <br>59. The General Theory of Electron Diffraction and Interference<br>60. Elementary Diffraction Patterns </p> <p>Part XII, Electron Interference and Electron Holography <br>61. General Introduction<br>62. Interferometry<br>63. Holography </p> <p>Part XIII, Theory of Image Formation <br>64. General Introduction<br>65. Fundamentals of Transfer Theory<br>66. The Theory of Bright-field Imaging. <br>67. Image Formation in the Scanning Transmission Electron Microscope <br>68. Statistical Parameter Estimation Theory</p> <p>Part XIV – Electron–specimen Interactions <br>69. Electron Interactions in Thin Specimens </p> <p>Part XV – Digital Image Processing <br>70. Introduction<br>71. Acquisition, Sampling and Coding<br>72. Enhancement <br>73. Linear Restoration<br>74. Nonlinear Restoration – the Phase Problem <br>75. Three-dimensional Reconstruction <br>76. Image Analysis <br>77. Microscope Parameter Measurement and Instrument Control</p> <p>Part XVI – Coherence, Brightness and Spectral Functions <br>78. Coherence and the Brightness Functions<br>79. Wigner Optics</p> <p>PART XVII – Vortex Studies, the Quantum Electron Microscope<br>80. Orbital Angular Momentum, Vortex Beams and the Quantum Electron Microscope</p>
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        Principles of Electron Optics, Volume 3