Quantum Geometry, Matrix Theory, and Gravity

aw_product_id: 
38582386503
merchant_image_url: 
merchant_category: 
Books
search_price: 
59.99
book_author_name: 
Harold C. Steinacker
book_type: 
Hardback
publisher: 
Cambridge University Press
published_date: 
11/04/2024
isbn: 
9781009440783
Merchant Product Cat path: 
Books > Science, Technology & Medicine > Mathematics & science > Physics > Mathematical physics
specifications: 
Harold C. Steinacker|Hardback|Cambridge University Press|11/04/2024
Merchant Product Id: 
9781009440783
Book Description: 
Building on mathematical structures familiar from quantum mechanics, this book provides an introduction to quantization in a broad context before developing a framework for quantum geometry in Matrix Theory and string theory. Taking a physics-oriented approach to quantum geometry, this framework helps explain the physics of Yang–Mills-type matrix models, leading to a quantum theory of space-time and matter. This novel framework is then applied to Matrix Theory, which is defined through distinguished maximally supersymmetric matrix models related to string theory. A mechanism for gravity is discussed in depth, which emerges as a quantum effect on quantum space-time within Matrix Theory. Using explicit examples and exercises, readers will develop a physical intuition for the mathematical concepts and mechanisms. It will benefit advanced students and researchers in theoretical and mathematical physics, and is a useful resource for physicists and mathematicians interested in the geometrical aspects of quantization in a broader context.

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