Optical Intelligence develops a rigorous and wide-ranging theory of how optics and artificial intelligence can be understood within a single mathematical and physical framework. The book begins from first principles, treating light as a structured medium of information transformation governed by Maxwell’s equations, wave propagation, Fourier analysis, statistical optics, and inverse problems. From there, it shows how classical optical processing, computational imaging, and functional analysis naturally connect to core ideas in modern AI, including representation learning, operator composition, kernel methods, optimization, and inference. Its central thesis is that optics is not merely a sensor front-end for digital intelligence, but a physically grounded computational substrate whose geometry, propagation laws, and material structure can actively shape learning and decision-making.
As the book progresses, it moves from foundations into advanced architectures and emerging research directions, including diffractive neural networks, integrated photonic systems, nonlinear optical learning, optical reservoirs, holographic memory, and hybrid optical-electronic intelligence. Throughout, the text emphasizes both theoretical depth and systems-level insight, showing how physical propagation, measurement, and learning can be co-designed to create new forms of intelligent sensing and computation. The result is a unified account of optical intelligence as a serious scientific discipline at the intersection of electromagnetism, signal processing, machine learning, and information theory. Rather than presenting optics and AI as separate domains that occasionally interact, the book argues that their deepest future lies in their integration into trainable, physically embodied systems for imaging, inference, communication, and adaptive computation.
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Seller: Grand Eagle Retail, Bensenville, IL, U.S.A.
Hardcover. Condition: new. Hardcover. Optical Intelligence develops a rigorous and wide-ranging theory of how optics and artificial intelligence can be understood within a single mathematical and physical framework. The book begins from first principles, treating light as a structured medium of information transformation governed by Maxwell's equations, wave propagation, Fourier analysis, statistical optics, and inverse problems. From there, it shows how classical optical processing, computational imaging, and functional analysis naturally connect to core ideas in modern AI, including representation learning, operator composition, kernel methods, optimization, and inference. Its central thesis is that optics is not merely a sensor front-end for digital intelligence, but a physically grounded computational substrate whose geometry, propagation laws, and material structure can actively shape learning and decision-making.As the book progresses, it moves from foundations into advanced architectures and emerging research directions, including diffractive neural networks, integrated photonic systems, nonlinear optical learning, optical reservoirs, holographic memory, and hybrid optical-electronic intelligence. Throughout, the text emphasizes both theoretical depth and systems-level insight, showing how physical propagation, measurement, and learning can be co-designed to create new forms of intelligent sensing and computation. The result is a unified account of optical intelligence as a serious scientific discipline at the intersection of electromagnetism, signal processing, machine learning, and information theory. Rather than presenting optics and AI as separate domains that occasionally interact, the book argues that their deepest future lies in their integration into trainable, physically embodied systems for imaging, inference, communication, and adaptive computation. Optical Intelligence is a rigorous exploration of the emerging field where optics and artificial intelligence meet. Blending the physics of light with the mathematics of information, inference, and learning. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9798904174828
Seller: California Books, Miami, FL, U.S.A.
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HRD. Condition: New. New Book. Shipped from UK. Established seller since 2000. Seller Inventory # L2-9798904174828
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Seller: PBShop.store US, Wood Dale, IL, U.S.A.
HRD. Condition: New. New Book. Shipped from UK. Established seller since 2000. Seller Inventory # L2-9798904174828
Seller: AussieBookSeller, Truganina, VIC, Australia
Hardcover. Condition: new. Hardcover. Optical Intelligence develops a rigorous and wide-ranging theory of how optics and artificial intelligence can be understood within a single mathematical and physical framework. The book begins from first principles, treating light as a structured medium of information transformation governed by Maxwell's equations, wave propagation, Fourier analysis, statistical optics, and inverse problems. From there, it shows how classical optical processing, computational imaging, and functional analysis naturally connect to core ideas in modern AI, including representation learning, operator composition, kernel methods, optimization, and inference. Its central thesis is that optics is not merely a sensor front-end for digital intelligence, but a physically grounded computational substrate whose geometry, propagation laws, and material structure can actively shape learning and decision-making.As the book progresses, it moves from foundations into advanced architectures and emerging research directions, including diffractive neural networks, integrated photonic systems, nonlinear optical learning, optical reservoirs, holographic memory, and hybrid optical-electronic intelligence. Throughout, the text emphasizes both theoretical depth and systems-level insight, showing how physical propagation, measurement, and learning can be co-designed to create new forms of intelligent sensing and computation. The result is a unified account of optical intelligence as a serious scientific discipline at the intersection of electromagnetism, signal processing, machine learning, and information theory. Rather than presenting optics and AI as separate domains that occasionally interact, the book argues that their deepest future lies in their integration into trainable, physically embodied systems for imaging, inference, communication, and adaptive computation. Optical Intelligence is a rigorous exploration of the emerging field where optics and artificial intelligence meet. Blending the physics of light with the mathematics of information, inference, and learning. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Seller Inventory # 9798904174828
Seller: CitiRetail, Stevenage, United Kingdom
Hardcover. Condition: new. Hardcover. Optical Intelligence develops a rigorous and wide-ranging theory of how optics and artificial intelligence can be understood within a single mathematical and physical framework. The book begins from first principles, treating light as a structured medium of information transformation governed by Maxwell's equations, wave propagation, Fourier analysis, statistical optics, and inverse problems. From there, it shows how classical optical processing, computational imaging, and functional analysis naturally connect to core ideas in modern AI, including representation learning, operator composition, kernel methods, optimization, and inference. Its central thesis is that optics is not merely a sensor front-end for digital intelligence, but a physically grounded computational substrate whose geometry, propagation laws, and material structure can actively shape learning and decision-making.As the book progresses, it moves from foundations into advanced architectures and emerging research directions, including diffractive neural networks, integrated photonic systems, nonlinear optical learning, optical reservoirs, holographic memory, and hybrid optical-electronic intelligence. Throughout, the text emphasizes both theoretical depth and systems-level insight, showing how physical propagation, measurement, and learning can be co-designed to create new forms of intelligent sensing and computation. The result is a unified account of optical intelligence as a serious scientific discipline at the intersection of electromagnetism, signal processing, machine learning, and information theory. Rather than presenting optics and AI as separate domains that occasionally interact, the book argues that their deepest future lies in their integration into trainable, physically embodied systems for imaging, inference, communication, and adaptive computation. Optical Intelligence is a rigorous exploration of the emerging field where optics and artificial intelligence meet. Blending the physics of light with the mathematics of information, inference, and learning. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9798904174828
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Seller: preigu, Osnabrück, Germany
Buch. Condition: Neu. Optical Intelligence | Andrew Kiruluta | Buch | Englisch | 2026 | BlochSpin | EAN 9798904174828 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand. Seller Inventory # 135224672
Seller: AHA-BUCH GmbH, Einbeck, Germany
Buch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Optical Intelligence develops a rigorous and wide-ranging theory of how optics and artificial intelligence can be understood within a single mathematical and physical framework. The book begins from first principles, treating light as a structured medium of information transformation governed by Maxwell's equations, wave propagation, Fourier analysis, statistical optics, and inverse problems. From there, it shows how classical optical processing, computational imaging, and functional analysis naturally connect to core ideas in modern AI, including representation learning, operator composition, kernel methods, optimization, and inference. Its central thesis is that optics is not merely a sensor front-end for digital intelligence, but a physically grounded computational substrate whose geometry, propagation laws, and material structure can actively shape learning and decision-making.As the book progresses, it moves from foundations into advanced architectures and emerging research directions, including diffractive neural networks, integrated photonic systems, nonlinear optical learning, optical reservoirs, holographic memory, and hybrid optical-electronic intelligence. Throughout, the text emphasizes both theoretical depth and systems-level insight, showing how physical propagation, measurement, and learning can be co-designed to create new forms of intelligent sensing and computation. The result is a unified account of optical intelligence as a serious scientific discipline at the intersection of electromagnetism, signal processing, machine learning, and information theory. Rather than presenting optics and AI as separate domains that occasionally interact, the book argues that their deepest future lies in their integration into trainable, physically embodied systems for imaging, inference, communication, and adaptive computation. Seller Inventory # 9798904174828