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طیف‌سنجی تبدیل فوریه

Fourier Transform Spectrometry

معرفی کتاب «طیف‌سنجی تبدیل فوریه» (با عنوان لاتین Fourier Transform Spectrometry) نوشتهٔ Sumner P. Davis, Mark C. Abrams and James W. Brault (Auth.)، منتشرشده توسط نشر Academic Press در سال 2001. این کتاب در 20 صفحه، فرمت pdf، زبان انگلیسی ارائه شده است.

Content: Preface , Pages xiii-xiv 1 - Introduction , Pages 1-16 2 - Why chose a fourier transform spectrometer? , Pages 17-27 3 - Theory of the ideal instrument , Pages 29-39 4 - Fourier analysis , Pages 41-66 5 - Nonideal (real-world) interferograms , Pages 67-80 6 - Working with digital interferograms, fourier transforms, and spectra , Pages 81-99 7 - Phase corrections and their significance , Pages 101-117 8 - Effects of noise in its various forms , Pages 119-141 9 - Line positions, line profiles, and line fitting , Pages 143-168 10 - Processing of spectral data , Pages 169-177 11 - Discussions, interventions, digressions and obscurations , Pages 179-212 12 - Chapter-by-chapter bibliography , Pages 213-222 13 - Chronological bibliography , Pages 223-231 14 - Applications Bibliography , Pages 233-242 15 - Author Bibliography , Pages 243-258 Index , Pages 259-262 "Fourier Transform Spectrometry provides essential background in Fourier analysis, systematically develops the fundamental concepts governing the design and operation of Fourier transform spectrometers, and illustrates every concept pictorially. Methods for transforming the interferogram and phase correcting the resulting spectrum are presented, with a focus on understanding the capabilities and limitations of the algorithms. Techniques of computerized spectrum analysis are discussed in a way that enables spectroscopists to understand the numerical processing algorithms without becoming computer programmers. Methods for determining the accuracy of numerical algorithms are detailed and compared pictorially and quantitatively. Algorithms for line finding, fitting spectra to voigtian profiles, filtering, Fourier transforming, and spectrum synthesis are a basis for spectrum analysis tools from which complex signal-processing procedures can be constructed.". "This book is of immediate value to those who use Fourier transform spectrometers in their research or are considering their use. It gives the mathematical and physical background for understanding the operation of an ideal interferometer, illustrates those ideas with example interferograms obtained via ideal and nonideal interferometers, and shows how the maximum amount of information can be extracted from the interferograms. Finally, it shows how sampling and noise affect the spectrum."--BOOK JACKET. Content: Preface, __Pages xiii-xiv__1 - Introduction, __Pages 1-16__2 - Why chose a fourier transform spectrometer?, __Pages 17-27__3 - Theory of the ideal instrument, __Pages 29-39__4 - Fourier analysis, __Pages 41-66__5 - Nonideal (real-world) interferograms, __Pages 67-80__6 - Working with digital interferograms, fourier transforms, and spectra, __Pages 81-99__7 - Phase corrections and their significance, __Pages 101-117__8 - Effects of noise in its various forms, __Pages 119-141__9 - Line positions, line profiles, and line fitting, __Pages 143-168__10 - Processing of spectral data, __Pages 169-177__11 - Discussions, interventions, digressions and obscurations, __Pages 179-212__12 - Chapter-by-chapter bibliography, __Pages 213-222__13 - Chronological bibliography, __Pages 223-231__14 - Applications Bibliography, __Pages 233-242__15 - Author Bibliography, __Pages 243-258__Index, __Pages 259-262__ Fourier Transform Spectrometry is of immediate use to those who use Fourier transform spectrometers in their research, or are considering their use. The authors' presentations enable readers to obtain a clear understanding of FTS, which is crucial to their studies and research.

Due to the increasing complexity and commercialization of instrumentation, achieving optimum performance in research applications and automated usage can be challenging. For example, a thorough understanding of the instrument can dramatically affect the outcome of the experiment and the generation of reliable data in applications where conditions are not ideal and resulting signals are weak. This book provides a comprehensive discussion of FTS from the ground up, covering basic concepts, instrumentation, data-processing algorithms, and techniques for computerized spectral analysis. Fourier Transform Spectrometry is of immediate use to those who use Fourier transform spectrometers in their research, or are considering their use. The authors' presentations enable readers to obtain a clear understanding of FTS, which is crucial to their studies and research. Due to the increasing complexity and commercialization of instrumentation, achieving optimum performance in research applications and automated usage can be challenging. For example, a thorough understanding of the instrument can dramatically affect the outcome of the experiment and the generation of reliable data in applications where conditions are not ideal and resulting signals are weak. This book provides a comprehensive discussion of FTS from the ground up, covering basic concepts, instrumentation, data-processing algorithms, and techniques for computerized spectral analysis This volume provides a comprehensive discussion of fourier transform spectrometry from the ground up, covering basic concepts, instrumentation, data-processing algorithms, and techniques for computerised spectral analysis Electromagnetic radiation in the classical picture is a traveling wave of orthogonal electric and magnetic fields whose amplitudes vary in time.
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