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The Theory of Symmetry Actions in Quantum Mechanics - with an Application to the Galilei Group (Hardcover, 2004 ed.): Gianni... The Theory of Symmetry Actions in Quantum Mechanics - with an Application to the Galilei Group (Hardcover, 2004 ed.)
Gianni Cassinelli, Ernesto Vito, Alberto Levrero, Pekka J Lahti
R1,558 Discovery Miles 15 580 Ships in 10 - 15 working days

This is a book about representing symmetry in quantum mechanics. The book is on a graduate and/or researcher level and it is written with an attempt to be concise, to respect conceptual clarity and mathematical rigor. The basic structures of quantum mechanics are used to identify the automorphism group of quantum mechanics. The main concept of a symmetry action is defined as a group homomorphism from a given group, the group of symmetries, to the automorphism group of quantum mechanics. The structure of symmetry actions is determined under the assumption that the symmetry group is a Lie group. The Galilei invariance is used to illustrate the general theory by giving a systematic presentation of a Galilei invariant elementary particle. A brief description of the Galilei invariant wave equations is also given.

The Theory of Symmetry Actions in Quantum Mechanics - with an Application to the Galilei Group (Paperback, Softcover reprint of... The Theory of Symmetry Actions in Quantum Mechanics - with an Application to the Galilei Group (Paperback, Softcover reprint of the original 1st ed. 2004)
Gianni Cassinelli, Ernesto Vito, Alberto Levrero, Pekka J Lahti
R1,362 Discovery Miles 13 620 Ships in 18 - 22 working days

This is a book about representing symmetry in quantum mechanics. The book is on a graduate and/or researcher level and it is written with an attempt to be concise, to respect conceptual clarity and mathematical rigor. The basic structures of quantum mechanics are used to identify the automorphism group of quantum mechanics. The main concept of a symmetry action is defined as a group homomorphism from a given group, the group of symmetries, to the automorphism group of quantum mechanics. The structure of symmetry actions is determined under the assumption that the symmetry group is a Lie group. The Galilei invariance is used to illustrate the general theory by giving a systematic presentation of a Galilei invariant elementary particle. A brief description of the Galilei invariant wave equations is also given.

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