图书简介
This monograph overviews classic and recent developments in theoretical statistical optics in connection with stationary and non-stationary (pulsed) optical source characterization and modeling, discusses various phenomena occurring with random light propagating in free space, on its interaction with optical systems, extended media and particulate collections. The text includes scalar, beam-like and general electromagnetic treatment of light. A brief statistical description of four fundamental experiments relating to random light: spatial and temporal field interference, intensity interferometry and phase conjugation, is also included in order to relate the analytical descriptions with practical observations.
Rigorous mathematical methods for statistical manipulation of light sources useful for remote shaping of its various average properties, enhanced image resolution, optimized transmission in random media and for other applications are introduced. For illustration of efficient ways for manipulation of light polarization the generalized Stokes-Mueller calculus is applied for description of interaction of beam-like fields with classic and currently popular devices of polarization optics, including a spatial light modulator.
Random light plays a special role in the image formation process. Three imaging modalities including the classic intensity-based system with structured source correlations, the polarization-based imaging system and the ghost interference approach are discussed in detail.
Theoretical aspects of potential scattering of light from weakly scattering media are considered under a very broad range of assumptions: scalar/electromagnetic incident light, deterministic/random light/media, single/particulate media. Then, problems and methods in light characterization on interaction with extended, turbulent-like natural media, such as the Earth’s atmosphere, oceans and soft bio-tissues that are currently widely used for communication, remote sensing and imaging purposes in these media, are provided.
Key Features
• The book blends classic treatments of well-established texts with very recent advances in random light manipulation, e.g., it has a detailed section on emerging area of structured coherence
• The book includes very detailed models of various random (extended and particulate) media that are rarely summarized in a single text
• The book includes a large number of math models, examples and illustrations
Introduction; Statistical Characterization of Optical Fields; Famous Experiments and Phenomena Relating to Random Light; Free-Space Propagation of Random Light; Structured Light Coherence; Light Interaction with Devices of Polarization Optics; Image Formation with Random Light; Light Scattering from Three-Dimensional Media; Light Interaction with Turbulence; Non-Stationary Pulse Ensembles
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