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Introduction to Optical Microscopy

Introduction to Optical Microscopy

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Jerome Mertz
Cambridge University Press
Edition: 2, 8/1/2019
EAN 9781108428309, ISBN10: 1108428304

Hardcover, 462 pages, 25.1 x 19.6 x 2.5 cm
Language: English

This fully updated, self-contained textbook covering modern optical microscopy equips students with a solid understanding of the theory underlying a range of advanced techniques. Two new chapters cover pump-probe techniques, and imaging in scattering media, and additional material throughout covers light-sheet microscopy, image scanning microscopy, and much more. An array of practical techniques are discussed, from classical phase contrast and confocal microscopy, to holographic, structured illumination, multi-photon, and coherent Raman microscopy, and optical coherence tomography. Fundamental topics are also covered, including Fourier optics, partial coherence, 3D imaging theory, statistical optics, and the physics of scattering and fluorescence. With a wealth of end-of-chapter problems, and a solutions manual for instructors available online, this is an invaluable book for electrical engineering, biomedical engineering, and physics students taking graduate courses on optical microscopy, as well as advanced undergraduates, professionals, and researchers looking for an accessible introduction to the field.

1. Introduction
2. Monochromatic wave propagation
3. Monochromatic field propagation through lens
4. Intensity propagation
5. 3D imaging
6. Radiometry
7. Intensity fluctuations
8. Detection noise
9. Absorption and scattering
10. Widefield microscopy
11. Interference microscopy
12. Optical coherence tomography
13. Fluorescence
14. Confocal microscopy
15. Structured illumination microscopy
16. Multiphoton microscopy
17. Multiharmonic microscopy
18. Pump-probe microscopy
19. Superresolution
20. Imaging in scattering media
Appendix A. Properties of Fourier transforms
Appendix B. Miscellaneous math
Appendix C. Jones matrix description of polarization.